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fwohci.c revision 1.52
      1  1.52       jmc /*	$NetBSD: fwohci.c,v 1.52 2002/02/18 09:10:44 jmc Exp $	*/
      2  1.14     enami 
      3   1.1      matt /*-
      4   1.1      matt  * Copyright (c) 2000 The NetBSD Foundation, Inc.
      5   1.1      matt  * All rights reserved.
      6   1.1      matt  *
      7   1.1      matt  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1      matt  * by Matt Thomas of 3am Software Foundry.
      9   1.1      matt  *
     10   1.1      matt  * Redistribution and use in source and binary forms, with or without
     11   1.1      matt  * modification, are permitted provided that the following conditions
     12   1.1      matt  * are met:
     13   1.1      matt  * 1. Redistributions of source code must retain the above copyright
     14   1.1      matt  *    notice, this list of conditions and the following disclaimer.
     15   1.1      matt  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.1      matt  *    notice, this list of conditions and the following disclaimer in the
     17   1.1      matt  *    documentation and/or other materials provided with the distribution.
     18   1.1      matt  * 3. All advertising materials mentioning features or use of this software
     19   1.1      matt  *    must display the following acknowledgement:
     20   1.1      matt  *        This product includes software developed by the NetBSD
     21   1.1      matt  *        Foundation, Inc. and its contributors.
     22   1.1      matt  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23   1.1      matt  *    contributors may be used to endorse or promote products derived
     24   1.1      matt  *    from this software without specific prior written permission.
     25   1.1      matt  *
     26   1.1      matt  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27   1.1      matt  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28   1.1      matt  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29   1.1      matt  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30   1.1      matt  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31   1.1      matt  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32   1.1      matt  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33   1.1      matt  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34   1.1      matt  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35   1.1      matt  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36   1.1      matt  * POSSIBILITY OF SUCH DAMAGE.
     37   1.1      matt  */
     38   1.1      matt 
     39   1.3      onoe /*
     40   1.3      onoe  * IEEE1394 Open Host Controller Interface
     41   1.3      onoe  *	based on OHCI Specification 1.1 (January 6, 2000)
     42   1.3      onoe  * The first version to support network interface part is wrtten by
     43   1.3      onoe  * Atsushi Onoe <onoe (at) netbsd.org>.
     44   1.3      onoe  */
     45   1.3      onoe 
     46  1.40      haya /*
     47  1.40      haya  * The first version to support isochronous acquisition part is wrtten
     48  1.40      haya  * by HAYAKAWA Koichi <haya (at) netbsd.org>.
     49  1.40      haya  */
     50  1.45     lukem 
     51  1.45     lukem #include <sys/cdefs.h>
     52  1.52       jmc __KERNEL_RCSID(0, "$NetBSD: fwohci.c,v 1.52 2002/02/18 09:10:44 jmc Exp $");
     53  1.45     lukem 
     54  1.45     lukem #define DOUBLEBUF 1
     55  1.45     lukem #define NO_THREAD 1
     56  1.40      haya 
     57   1.3      onoe #include "opt_inet.h"
     58   1.3      onoe 
     59   1.1      matt #include <sys/param.h>
     60   1.2  augustss #include <sys/systm.h>
     61  1.24       jmc #include <sys/kthread.h>
     62   1.1      matt #include <sys/socket.h>
     63   1.7      onoe #include <sys/callout.h>
     64   1.1      matt #include <sys/device.h>
     65   1.7      onoe #include <sys/kernel.h>
     66   1.3      onoe #include <sys/malloc.h>
     67   1.3      onoe #include <sys/mbuf.h>
     68   1.1      matt 
     69   1.7      onoe #if __NetBSD_Version__ >= 105010000
     70   1.7      onoe #include <uvm/uvm_extern.h>
     71   1.7      onoe #else
     72   1.7      onoe #include <vm/vm.h>
     73   1.7      onoe #endif
     74   1.7      onoe 
     75   1.1      matt #include <machine/bus.h>
     76  1.24       jmc #include <machine/intr.h>
     77   1.1      matt 
     78   1.1      matt #include <dev/ieee1394/ieee1394reg.h>
     79   1.1      matt #include <dev/ieee1394/fwohcireg.h>
     80   1.1      matt 
     81   1.1      matt #include <dev/ieee1394/ieee1394var.h>
     82   1.1      matt #include <dev/ieee1394/fwohcivar.h>
     83   1.1      matt 
     84   1.1      matt static const char * const ieee1394_speeds[] = { IEEE1394_SPD_STRINGS };
     85   1.1      matt 
     86   1.5      matt #if 0
     87  1.26     enami static int fwohci_dnamem_alloc(struct fwohci_softc *sc, int size,
     88  1.28       jmc     int alignment, bus_dmamap_t *mapp, caddr_t *kvap, int flags);
     89   1.5      matt #endif
     90  1.24       jmc static void fwohci_create_event_thread(void *);
     91  1.24       jmc static void fwohci_thread_init(void *);
     92  1.24       jmc 
     93  1.24       jmc static void fwohci_event_thread(struct fwohci_softc *);
     94   1.7      onoe static void fwohci_hw_init(struct fwohci_softc *);
     95   1.7      onoe static void fwohci_power(int, void *);
     96   1.7      onoe static void fwohci_shutdown(void *);
     97   1.5      matt 
     98   1.3      onoe static int  fwohci_desc_alloc(struct fwohci_softc *);
     99   1.9      onoe static struct fwohci_desc *fwohci_desc_get(struct fwohci_softc *, int);
    100   1.9      onoe static void fwohci_desc_put(struct fwohci_softc *, struct fwohci_desc *, int);
    101   1.3      onoe 
    102   1.3      onoe static int  fwohci_ctx_alloc(struct fwohci_softc *, struct fwohci_ctx **,
    103  1.40      haya     int, int, int);
    104   1.9      onoe static void fwohci_ctx_free(struct fwohci_softc *, struct fwohci_ctx *);
    105   1.3      onoe static void fwohci_ctx_init(struct fwohci_softc *, struct fwohci_ctx *);
    106   1.3      onoe 
    107   1.3      onoe static int  fwohci_buf_alloc(struct fwohci_softc *, struct fwohci_buf *);
    108   1.3      onoe static void fwohci_buf_free(struct fwohci_softc *, struct fwohci_buf *);
    109  1.36      onoe static void fwohci_buf_init_rx(struct fwohci_softc *);
    110  1.36      onoe static void fwohci_buf_start_rx(struct fwohci_softc *);
    111  1.36      onoe static void fwohci_buf_stop_tx(struct fwohci_softc *);
    112  1.36      onoe static void fwohci_buf_stop_rx(struct fwohci_softc *);
    113   1.3      onoe static void fwohci_buf_next(struct fwohci_softc *, struct fwohci_ctx *);
    114  1.39      onoe static int  fwohci_buf_pktget(struct fwohci_softc *, struct fwohci_buf **,
    115  1.28       jmc     caddr_t *, int);
    116   1.3      onoe static int  fwohci_buf_input(struct fwohci_softc *, struct fwohci_ctx *,
    117  1.28       jmc     struct fwohci_pkt *);
    118  1.36      onoe static int  fwohci_buf_input_ppb(struct fwohci_softc *, struct fwohci_ctx *,
    119  1.36      onoe     struct fwohci_pkt *);
    120   1.3      onoe 
    121   1.7      onoe static u_int8_t fwohci_phy_read(struct fwohci_softc *, u_int8_t);
    122   1.7      onoe static void fwohci_phy_write(struct fwohci_softc *, u_int8_t, u_int8_t);
    123   1.3      onoe static void fwohci_phy_busreset(struct fwohci_softc *);
    124   1.7      onoe static void fwohci_phy_input(struct fwohci_softc *, struct fwohci_pkt *);
    125   1.3      onoe 
    126   1.3      onoe static int  fwohci_handler_set(struct fwohci_softc *, int, u_int32_t, u_int32_t,
    127  1.28       jmc     int (*)(struct fwohci_softc *, void *, struct fwohci_pkt *), void *);
    128   1.3      onoe 
    129   1.3      onoe static void fwohci_arrq_input(struct fwohci_softc *, struct fwohci_ctx *);
    130   1.3      onoe static void fwohci_arrs_input(struct fwohci_softc *, struct fwohci_ctx *);
    131   1.3      onoe static void fwohci_ir_input(struct fwohci_softc *, struct fwohci_ctx *);
    132   1.3      onoe 
    133   1.3      onoe static int  fwohci_at_output(struct fwohci_softc *, struct fwohci_ctx *,
    134  1.28       jmc     struct fwohci_pkt *);
    135   1.9      onoe static void fwohci_at_done(struct fwohci_softc *, struct fwohci_ctx *, int);
    136   1.3      onoe static void fwohci_atrs_output(struct fwohci_softc *, int, struct fwohci_pkt *,
    137  1.28       jmc     struct fwohci_pkt *);
    138   1.3      onoe 
    139  1.16      onoe static int  fwohci_guidrom_init(struct fwohci_softc *);
    140   1.3      onoe static void fwohci_configrom_init(struct fwohci_softc *);
    141  1.24       jmc static int  fwohci_configrom_input(struct fwohci_softc *, void *,
    142  1.28       jmc     struct fwohci_pkt *);
    143   1.3      onoe static void fwohci_selfid_init(struct fwohci_softc *);
    144   1.7      onoe static int  fwohci_selfid_input(struct fwohci_softc *);
    145   1.3      onoe 
    146   1.3      onoe static void fwohci_csr_init(struct fwohci_softc *);
    147   1.3      onoe static int  fwohci_csr_input(struct fwohci_softc *, void *,
    148  1.28       jmc     struct fwohci_pkt *);
    149   1.3      onoe 
    150   1.3      onoe static void fwohci_uid_collect(struct fwohci_softc *);
    151  1.36      onoe static void fwohci_uid_req(struct fwohci_softc *, int);
    152   1.3      onoe static int  fwohci_uid_input(struct fwohci_softc *, void *,
    153  1.28       jmc     struct fwohci_pkt *);
    154   1.8      onoe static int  fwohci_uid_lookup(struct fwohci_softc *, const u_int8_t *);
    155  1.24       jmc static void fwohci_check_nodes(struct fwohci_softc *);
    156   1.3      onoe 
    157   1.3      onoe static int  fwohci_if_inreg(struct device *, u_int32_t, u_int32_t,
    158  1.28       jmc     void (*)(struct device *, struct mbuf *));
    159   1.3      onoe static int  fwohci_if_input(struct fwohci_softc *, void *, struct fwohci_pkt *);
    160  1.40      haya static int  fwohci_if_input_iso(struct fwohci_softc *, void *, struct fwohci_pkt *);
    161   1.3      onoe static int  fwohci_if_output(struct device *, struct mbuf *,
    162  1.28       jmc     void (*)(struct device *, struct mbuf *));
    163  1.41      onoe static int fwohci_if_setiso(struct device *, u_int32_t, u_int32_t, u_int32_t,
    164  1.40      haya     void (*)(struct device *, struct mbuf *));
    165  1.29       jmc static int  fwohci_read(struct ieee1394_abuf *);
    166  1.29       jmc static int  fwohci_write(struct ieee1394_abuf *);
    167  1.31       jmc static int  fwohci_read_resp(struct fwohci_softc *, void *, struct fwohci_pkt *);
    168  1.31       jmc static int  fwohci_write_ack(struct fwohci_softc *, void *, struct fwohci_pkt *);
    169  1.31       jmc static int  fwohci_read_multi_resp(struct fwohci_softc *, void *,
    170  1.28       jmc     struct fwohci_pkt *);
    171  1.24       jmc static int  fwohci_inreg(struct ieee1394_abuf *, int);
    172  1.51       jmc static int  fwohci_unreg(struct ieee1394_abuf *, int);
    173  1.24       jmc static int  fwohci_parse_input(struct fwohci_softc *, void *,
    174  1.28       jmc     struct fwohci_pkt *);
    175  1.30       jmc static int  fwohci_submatch(struct device *, struct cfdata *, void *);
    176   1.3      onoe 
    177   1.8      onoe #ifdef FW_DEBUG
    178  1.33      onoe static void fwohci_show_intr(struct fwohci_softc *, u_int32_t);
    179  1.33      onoe static void fwohci_show_phypkt(struct fwohci_softc *, u_int32_t);
    180  1.28       jmc 
    181  1.28       jmc /* 1 is normal debug, 2 is verbose debug, 3 is complete (packet dumps). */
    182  1.28       jmc 
    183  1.28       jmc #define DPRINTF(x)      if (fwdebug) printf x
    184  1.28       jmc #define DPRINTFN(n,x)   if (fwdebug>(n)) printf x
    185  1.30       jmc int     fwdebug = 0;
    186  1.28       jmc #else
    187  1.28       jmc #define DPRINTF(x)
    188  1.28       jmc #define DPRINTFN(n,x)
    189   1.8      onoe #endif
    190   1.8      onoe 
    191   1.1      matt int
    192   1.5      matt fwohci_init(struct fwohci_softc *sc, const struct evcnt *ev)
    193   1.1      matt {
    194   1.3      onoe 	int i;
    195   1.1      matt 	u_int32_t val;
    196   1.5      matt #if 0
    197   1.5      matt 	int error;
    198   1.5      matt #endif
    199   1.5      matt 
    200   1.5      matt 	evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, ev,
    201   1.5      matt 	    sc->sc_sc1394.sc1394_dev.dv_xname, "intr");
    202   1.1      matt 
    203  1.40      haya 	evcnt_attach_dynamic(&sc->sc_isocnt, EVCNT_TYPE_MISC, ev,
    204  1.40      haya 	    sc->sc_sc1394.sc1394_dev.dv_xname, "iso");
    205  1.40      haya 	evcnt_attach_dynamic(&sc->sc_isopktcnt, EVCNT_TYPE_MISC, ev,
    206  1.40      haya 	    sc->sc_sc1394.sc1394_dev.dv_xname, "isopackets");
    207  1.40      haya 
    208   1.3      onoe 	/*
    209   1.3      onoe 	 * Wait for reset completion
    210   1.3      onoe 	 */
    211   1.3      onoe 	for (i = 0; i < OHCI_LOOP; i++) {
    212   1.3      onoe 		val = OHCI_CSR_READ(sc, OHCI_REG_HCControlClear);
    213   1.3      onoe 		if ((val & OHCI_HCControl_SoftReset) == 0)
    214   1.3      onoe 			break;
    215  1.36      onoe 		DELAY(10);
    216   1.3      onoe 	}
    217   1.3      onoe 
    218   1.1      matt 	/* What dialect of OHCI is this device?
    219   1.1      matt 	 */
    220   1.1      matt 	val = OHCI_CSR_READ(sc, OHCI_REG_Version);
    221   1.1      matt 	printf("%s: OHCI %u.%u", sc->sc_sc1394.sc1394_dev.dv_xname,
    222   1.1      matt 	    OHCI_Version_GET_Version(val), OHCI_Version_GET_Revision(val));
    223   1.1      matt 
    224  1.24       jmc 	LIST_INIT(&sc->sc_nodelist);
    225  1.26     enami 
    226  1.16      onoe 	if (fwohci_guidrom_init(sc) != 0) {
    227  1.16      onoe 		printf("\n%s: fatal: no global UID ROM\n",
    228  1.16      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname);
    229   1.1      matt 		return -1;
    230   1.1      matt 	}
    231   1.1      matt 
    232   1.1      matt 	printf(", %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x",
    233   1.1      matt 	    sc->sc_sc1394.sc1394_guid[0], sc->sc_sc1394.sc1394_guid[1],
    234   1.1      matt 	    sc->sc_sc1394.sc1394_guid[2], sc->sc_sc1394.sc1394_guid[3],
    235   1.1      matt 	    sc->sc_sc1394.sc1394_guid[4], sc->sc_sc1394.sc1394_guid[5],
    236   1.1      matt 	    sc->sc_sc1394.sc1394_guid[6], sc->sc_sc1394.sc1394_guid[7]);
    237   1.1      matt 
    238   1.1      matt 	/* Get the maximum link speed and receive size
    239   1.1      matt 	 */
    240   1.1      matt 	val = OHCI_CSR_READ(sc, OHCI_REG_BusOptions);
    241   1.1      matt 	sc->sc_sc1394.sc1394_link_speed =
    242  1.18      onoe 	    OHCI_BITVAL(val, OHCI_BusOptions_LinkSpd);
    243   1.1      matt 	if (sc->sc_sc1394.sc1394_link_speed < IEEE1394_SPD_MAX) {
    244  1.26     enami 		printf(", %s",
    245  1.26     enami 		    ieee1394_speeds[sc->sc_sc1394.sc1394_link_speed]);
    246   1.1      matt 	} else {
    247   1.1      matt 		printf(", unknown speed %u", sc->sc_sc1394.sc1394_link_speed);
    248   1.1      matt 	}
    249  1.28       jmc 
    250   1.1      matt 	/* MaxRec is encoded as log2(max_rec_octets)-1
    251   1.1      matt 	 */
    252   1.1      matt 	sc->sc_sc1394.sc1394_max_receive =
    253  1.18      onoe 	    1 << (OHCI_BITVAL(val, OHCI_BusOptions_MaxRec) + 1);
    254   1.3      onoe 	printf(", %u max_rec", sc->sc_sc1394.sc1394_max_receive);
    255   1.3      onoe 
    256   1.3      onoe 	/*
    257   1.3      onoe 	 * Count how many isochronous ctx we have.
    258   1.3      onoe 	 */
    259   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IsoRecvIntMaskSet, ~0);
    260   1.3      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_IsoRecvIntMaskClear);
    261   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IsoRecvIntMaskClear, ~0);
    262   1.3      onoe 	for (i = 0; val != 0; val >>= 1) {
    263   1.3      onoe 		if (val & 0x1)
    264   1.3      onoe 			i++;
    265   1.3      onoe 	}
    266   1.3      onoe 	sc->sc_isoctx = i;
    267   1.3      onoe 	printf(", %d iso_ctx", sc->sc_isoctx);
    268  1.28       jmc 
    269   1.1      matt 	printf("\n");
    270   1.3      onoe 
    271   1.5      matt #if 0
    272  1.26     enami 	error = fwohci_dnamem_alloc(sc, OHCI_CONFIG_SIZE,
    273  1.26     enami 	    OHCI_CONFIG_ALIGNMENT, &sc->sc_configrom_map,
    274  1.26     enami 	    (caddr_t *) &sc->sc_configrom, BUS_DMA_WAITOK|BUS_DMA_COHERENT);
    275   1.5      matt 	return error;
    276   1.5      matt #endif
    277   1.5      matt 
    278  1.24       jmc 	sc->sc_dying = 0;
    279  1.36      onoe 	sc->sc_nodeid = 0xffff;		/* invalid */
    280   1.3      onoe 
    281  1.26     enami 	kthread_create(fwohci_create_event_thread, sc);
    282   1.1      matt 	return 0;
    283   1.1      matt }
    284   1.1      matt 
    285  1.40      haya static int
    286  1.41      onoe fwohci_if_setiso(struct device *self, u_int32_t channel, u_int32_t tag,
    287  1.41      onoe     u_int32_t direction, void (*handler)(struct device *, struct mbuf *))
    288  1.40      haya {
    289  1.40      haya 	struct fwohci_softc *sc = (struct fwohci_softc *)self;
    290  1.40      haya 	int retval;
    291  1.40      haya 	int s;
    292  1.40      haya 
    293  1.40      haya 	if (direction == 1) {
    294  1.40      haya 		return EIO;
    295  1.40      haya 	}
    296  1.40      haya 
    297  1.40      haya 	s = splnet();
    298  1.40      haya 	retval = fwohci_handler_set(sc, IEEE1394_TCODE_STREAM_DATA,
    299  1.40      haya 	    channel, tag, fwohci_if_input_iso, handler);
    300  1.40      haya 	splx(s);
    301  1.40      haya 
    302  1.40      haya 	if (!retval) {
    303  1.40      haya 		printf("%s: dummy iso handler set\n",
    304  1.40      haya 		    sc->sc_sc1394.sc1394_dev.dv_xname);
    305  1.40      haya 	} else {
    306  1.40      haya 		printf("%s: dummy iso handler cannot set\n",
    307  1.40      haya 		    sc->sc_sc1394.sc1394_dev.dv_xname);
    308  1.40      haya 	}
    309  1.40      haya 
    310  1.40      haya 	return retval;
    311  1.40      haya }
    312  1.40      haya 
    313   1.1      matt int
    314   1.1      matt fwohci_intr(void *arg)
    315   1.1      matt {
    316   1.1      matt 	struct fwohci_softc * const sc = arg;
    317   1.1      matt 	int progress = 0;
    318   1.3      onoe 	u_int32_t intmask, iso;
    319   1.1      matt 
    320   1.1      matt 	for (;;) {
    321   1.3      onoe 		intmask = OHCI_CSR_READ(sc, OHCI_REG_IntEventClear);
    322  1.24       jmc 
    323  1.26     enami 		/*
    324  1.26     enami 		 * On a bus reset, everything except bus reset gets
    325  1.26     enami 		 * cleared.  That can't get cleared until the selfid
    326  1.26     enami 		 * phase completes (which happens outside the
    327  1.26     enami 		 * interrupt routines). So if just a bus reset is left
    328  1.26     enami 		 * in the mask and it's already in the sc_intmask,
    329  1.26     enami 		 * just return.
    330  1.26     enami 		 */
    331  1.26     enami 
    332  1.26     enami 		if ((intmask == 0) ||
    333  1.26     enami 		    (progress && (intmask == OHCI_Int_BusReset) &&
    334  1.26     enami 			(sc->sc_intmask & OHCI_Int_BusReset))) {
    335  1.26     enami 			if (progress)
    336  1.26     enami 				wakeup(fwohci_event_thread);
    337  1.26     enami 			return progress;
    338  1.26     enami 		}
    339   1.7      onoe 		OHCI_CSR_WRITE(sc, OHCI_REG_IntEventClear,
    340   1.7      onoe 		    intmask & ~OHCI_Int_BusReset);
    341   1.3      onoe #ifdef FW_DEBUG
    342  1.33      onoe 		if (fwdebug > 1)
    343  1.33      onoe 			fwohci_show_intr(sc, intmask);
    344  1.33      onoe #endif
    345  1.28       jmc 
    346   1.3      onoe 		if (intmask & OHCI_Int_BusReset) {
    347   1.7      onoe 			/*
    348   1.7      onoe 			 * According to OHCI spec 6.1.1 "busReset",
    349   1.7      onoe 			 * All asynchronous transmit must be stopped before
    350   1.7      onoe 			 * clearing BusReset.  Moreover, the BusReset
    351   1.7      onoe 			 * interrupt bit should not be cleared during the
    352   1.7      onoe 			 * SelfID phase.  Thus we turned off interrupt mask
    353   1.7      onoe 			 * bit of BusReset instead until SelfID completion
    354   1.7      onoe 			 * or SelfID timeout.
    355   1.7      onoe 			 */
    356   1.9      onoe 			intmask &= OHCI_Int_SelfIDComplete;
    357  1.26     enami 			OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskClear,
    358  1.26     enami 			    OHCI_Int_BusReset);
    359  1.34      onoe 			sc->sc_intmask = OHCI_Int_BusReset;
    360   1.9      onoe 		}
    361  1.34      onoe 		sc->sc_intmask |= intmask;
    362   1.9      onoe 
    363   1.3      onoe 		if (intmask & OHCI_Int_IsochTx) {
    364  1.26     enami 			iso = OHCI_CSR_READ(sc, OHCI_REG_IsoXmitIntEventClear);
    365  1.26     enami 			OHCI_CSR_WRITE(sc, OHCI_REG_IsoXmitIntEventClear, iso);
    366  1.26     enami 		}
    367   1.3      onoe 		if (intmask & OHCI_Int_IsochRx) {
    368  1.40      haya #if NO_THREAD
    369  1.40      haya 			int i;
    370  1.40      haya 			int asyncstream = 0;
    371  1.40      haya #endif
    372  1.40      haya 
    373  1.26     enami 			iso = OHCI_CSR_READ(sc, OHCI_REG_IsoRecvIntEventClear);
    374  1.26     enami 			OHCI_CSR_WRITE(sc, OHCI_REG_IsoRecvIntEventClear, iso);
    375  1.40      haya #if NO_THREAD
    376  1.40      haya 			for (i = 0; i < sc->sc_isoctx; i++) {
    377  1.40      haya 				if ((iso & (1<<i)) && sc->sc_ctx_ir[i] != NULL) {
    378  1.40      haya 					if (sc->sc_ctx_ir[i]->fc_type == FWOHCI_CTX_ISO_SINGLE) {
    379  1.40      haya 						asyncstream |= (1 << i);
    380  1.40      haya 						continue;
    381  1.40      haya 					}
    382  1.40      haya 					bus_dmamap_sync(sc->sc_dmat,
    383  1.40      haya 					    sc->sc_ddmamap,
    384  1.40      haya 					    0, sizeof(struct fwohci_desc) * sc->sc_descsize,
    385  1.40      haya 					    BUS_DMASYNC_PREREAD);
    386  1.40      haya 					sc->sc_isocnt.ev_count++;
    387  1.40      haya 
    388  1.40      haya 					fwohci_ir_input(sc, sc->sc_ctx_ir[i]);
    389  1.40      haya 				}
    390  1.40      haya 			}
    391  1.40      haya 			if (asyncstream != 0) {
    392  1.40      haya 				sc->sc_iso |= asyncstream;
    393  1.40      haya 			} else {
    394  1.40      haya 				/* all iso intr is pure isochronous */
    395  1.40      haya 				sc->sc_intmask &= ~OHCI_Int_IsochRx;
    396  1.40      haya 			}
    397  1.40      haya #else
    398  1.26     enami 			sc->sc_iso |= iso;
    399  1.40      haya #endif /* NO_THREAD */
    400  1.26     enami 		}
    401   1.3      onoe 
    402   1.5      matt 		if (!progress) {
    403   1.5      matt 			sc->sc_intrcnt.ev_count++;
    404   1.5      matt 			progress = 1;
    405   1.5      matt 		}
    406   1.1      matt 	}
    407   1.3      onoe }
    408   1.3      onoe 
    409  1.24       jmc static void
    410  1.24       jmc fwohci_create_event_thread(void *arg)
    411  1.24       jmc {
    412  1.26     enami 	struct fwohci_softc  *sc = arg;
    413  1.24       jmc 
    414  1.26     enami 	if (kthread_create1(fwohci_thread_init, sc, &sc->sc_event_thread, "%s",
    415  1.26     enami 	    sc->sc_sc1394.sc1394_dev.dv_xname)) {
    416  1.26     enami 		printf("%s: unable to create event thread\n",
    417  1.26     enami 		    sc->sc_sc1394.sc1394_dev.dv_xname);
    418  1.26     enami 		panic("fwohci_create_event_thread");
    419  1.26     enami 	}
    420  1.24       jmc }
    421  1.24       jmc 
    422  1.24       jmc static void
    423  1.24       jmc fwohci_thread_init(void *arg)
    424  1.24       jmc {
    425  1.26     enami 	struct fwohci_softc *sc = arg;
    426  1.26     enami 	int i;
    427  1.26     enami 
    428  1.26     enami 	/*
    429  1.24       jmc 	 * Allocate descriptors
    430  1.24       jmc 	 */
    431  1.26     enami 	if (fwohci_desc_alloc(sc)) {
    432  1.26     enami 		printf("%s: not enabling interrupts\n",
    433  1.26     enami 		    sc->sc_sc1394.sc1394_dev.dv_xname);
    434  1.26     enami 		kthread_exit(1);
    435  1.26     enami 	}
    436  1.24       jmc 
    437  1.24       jmc 	/*
    438  1.24       jmc 	 * Enable Link Power
    439  1.24       jmc 	 */
    440  1.24       jmc 
    441  1.24       jmc 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet, OHCI_HCControl_LPS);
    442  1.24       jmc 
    443  1.24       jmc 	/*
    444  1.24       jmc 	 * Allocate DMA Context
    445  1.24       jmc 	 */
    446  1.24       jmc 	fwohci_ctx_alloc(sc, &sc->sc_ctx_arrq, OHCI_BUF_ARRQ_CNT,
    447  1.40      haya 	    OHCI_CTX_ASYNC_RX_REQUEST, FWOHCI_CTX_ASYNC);
    448  1.24       jmc 	fwohci_ctx_alloc(sc, &sc->sc_ctx_arrs, OHCI_BUF_ARRS_CNT,
    449  1.40      haya 	    OHCI_CTX_ASYNC_RX_RESPONSE, FWOHCI_CTX_ASYNC);
    450  1.40      haya 	fwohci_ctx_alloc(sc, &sc->sc_ctx_atrq, 0, OHCI_CTX_ASYNC_TX_REQUEST,
    451  1.40      haya 	    FWOHCI_CTX_ASYNC);
    452  1.40      haya 	fwohci_ctx_alloc(sc, &sc->sc_ctx_atrs, 0, OHCI_CTX_ASYNC_TX_RESPONSE,
    453  1.40      haya 	    FWOHCI_CTX_ASYNC);
    454  1.24       jmc 	sc->sc_ctx_ir = malloc(sizeof(sc->sc_ctx_ir[0]) * sc->sc_isoctx,
    455  1.24       jmc 	    M_DEVBUF, M_WAITOK);
    456  1.24       jmc 	for (i = 0; i < sc->sc_isoctx; i++)
    457  1.24       jmc 		sc->sc_ctx_ir[i] = NULL;
    458  1.24       jmc 
    459  1.24       jmc 	/*
    460  1.24       jmc 	 * Allocate buffer for configuration ROM and SelfID buffer
    461  1.24       jmc 	 */
    462  1.24       jmc 	fwohci_buf_alloc(sc, &sc->sc_buf_cnfrom);
    463  1.24       jmc 	fwohci_buf_alloc(sc, &sc->sc_buf_selfid);
    464  1.24       jmc 
    465  1.26     enami 	callout_init(&sc->sc_selfid_callout);
    466  1.24       jmc 
    467  1.24       jmc 	sc->sc_sc1394.sc1394_ifinreg = fwohci_if_inreg;
    468  1.24       jmc 	sc->sc_sc1394.sc1394_ifoutput = fwohci_if_output;
    469  1.40      haya 	sc->sc_sc1394.sc1394_ifsetiso = fwohci_if_setiso;
    470  1.24       jmc 
    471  1.24       jmc 	/*
    472  1.24       jmc 	 * establish hooks for shutdown and suspend/resume
    473  1.24       jmc 	 */
    474  1.24       jmc 	sc->sc_shutdownhook = shutdownhook_establish(fwohci_shutdown, sc);
    475  1.24       jmc 	sc->sc_powerhook = powerhook_establish(fwohci_power, sc);
    476  1.24       jmc 
    477  1.26     enami 	sc->sc_sc1394.sc1394_if = config_found(&sc->sc_sc1394.sc1394_dev, "fw",
    478  1.26     enami 	    fwohci_print);
    479  1.24       jmc 
    480  1.26     enami 	/* Main loop. It's not coming back normally. */
    481  1.24       jmc 
    482  1.26     enami 	fwohci_event_thread(sc);
    483  1.24       jmc 
    484  1.26     enami 	kthread_exit(0);
    485  1.24       jmc }
    486  1.24       jmc 
    487  1.24       jmc static void
    488  1.24       jmc fwohci_event_thread(struct fwohci_softc *sc)
    489  1.24       jmc {
    490  1.26     enami 	int i, s;
    491  1.26     enami 	u_int32_t intmask, iso;
    492  1.26     enami 
    493  1.26     enami 	s = splbio();
    494  1.26     enami 
    495  1.26     enami 	/*
    496  1.26     enami 	 * Initialize hardware registers.
    497  1.26     enami 	 */
    498  1.26     enami 
    499  1.26     enami 	fwohci_hw_init(sc);
    500  1.26     enami 
    501  1.26     enami 	/* Initial Bus Reset */
    502  1.26     enami 	fwohci_phy_busreset(sc);
    503  1.26     enami 	splx(s);
    504  1.26     enami 
    505  1.26     enami 	while (!sc->sc_dying) {
    506  1.35      onoe 		s = splbio();
    507  1.35      onoe 		intmask = sc->sc_intmask;
    508  1.35      onoe 		if (intmask == 0) {
    509  1.36      onoe 			tsleep(fwohci_event_thread, PZERO, "fwohciev", 0);
    510  1.35      onoe 			splx(s);
    511  1.35      onoe 			continue;
    512  1.35      onoe 		}
    513  1.35      onoe 		sc->sc_intmask = 0;
    514  1.35      onoe 		splx(s);
    515  1.35      onoe 
    516  1.35      onoe 		if (intmask & OHCI_Int_BusReset) {
    517  1.36      onoe 			fwohci_buf_stop_tx(sc);
    518  1.35      onoe 			if (sc->sc_uidtbl != NULL) {
    519  1.35      onoe 				free(sc->sc_uidtbl, M_DEVBUF);
    520  1.35      onoe 				sc->sc_uidtbl = NULL;
    521  1.35      onoe 			}
    522  1.35      onoe 
    523  1.35      onoe 			callout_reset(&sc->sc_selfid_callout,
    524  1.35      onoe 			    OHCI_SELFID_TIMEOUT,
    525  1.35      onoe 			    (void (*)(void *))fwohci_phy_busreset, sc);
    526  1.35      onoe 			sc->sc_nodeid = 0xffff;	/* indicate invalid */
    527  1.35      onoe 			sc->sc_rootid = 0;
    528  1.35      onoe 			sc->sc_irmid = IEEE1394_BCAST_PHY_ID;
    529  1.35      onoe 		}
    530  1.35      onoe 		if (intmask & OHCI_Int_SelfIDComplete) {
    531  1.26     enami 			s = splbio();
    532  1.35      onoe 			OHCI_CSR_WRITE(sc, OHCI_REG_IntEventClear,
    533  1.35      onoe 			    OHCI_Int_BusReset);
    534  1.35      onoe 			OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskSet,
    535  1.35      onoe 			    OHCI_Int_BusReset);
    536  1.35      onoe 			splx(s);
    537  1.35      onoe 			callout_stop(&sc->sc_selfid_callout);
    538  1.35      onoe 			if (fwohci_selfid_input(sc) == 0) {
    539  1.36      onoe 				fwohci_buf_start_rx(sc);
    540  1.35      onoe 				fwohci_uid_collect(sc);
    541  1.35      onoe 			}
    542  1.35      onoe 		}
    543  1.35      onoe 		if (intmask & OHCI_Int_ReqTxComplete)
    544  1.35      onoe 			fwohci_at_done(sc, sc->sc_ctx_atrq, 0);
    545  1.35      onoe 		if (intmask & OHCI_Int_RespTxComplete)
    546  1.35      onoe 			fwohci_at_done(sc, sc->sc_ctx_atrs, 0);
    547  1.35      onoe 		if (intmask & OHCI_Int_RQPkt)
    548  1.35      onoe 			fwohci_arrq_input(sc, sc->sc_ctx_arrq);
    549  1.35      onoe 		if (intmask & OHCI_Int_RSPkt)
    550  1.35      onoe 			fwohci_arrs_input(sc, sc->sc_ctx_arrs);
    551  1.35      onoe 		if (intmask & OHCI_Int_IsochRx) {
    552  1.35      onoe 			s = splbio();
    553  1.35      onoe 			iso = sc->sc_iso;
    554  1.35      onoe 			sc->sc_iso = 0;
    555  1.35      onoe 			splx(s);
    556  1.35      onoe 			for (i = 0; i < sc->sc_isoctx; i++) {
    557  1.35      onoe 				if ((iso & (1 << i)) &&
    558  1.40      haya 				    sc->sc_ctx_ir[i] != NULL) {
    559  1.35      onoe 					fwohci_ir_input(sc, sc->sc_ctx_ir[i]);
    560  1.40      haya 					sc->sc_isocnt.ev_count++;
    561  1.40      haya 				}
    562  1.35      onoe 			}
    563  1.26     enami 		}
    564  1.26     enami 	}
    565  1.24       jmc }
    566  1.24       jmc 
    567   1.5      matt #if 0
    568   1.5      matt static int
    569   1.5      matt fwohci_dnamem_alloc(struct fwohci_softc *sc, int size, int alignment,
    570  1.26     enami     bus_dmamap_t *mapp, caddr_t *kvap, int flags)
    571   1.5      matt {
    572   1.5      matt 	bus_dma_segment_t segs[1];
    573   1.5      matt 	int error, nsegs, steps;
    574   1.5      matt 
    575   1.5      matt 	steps = 0;
    576   1.5      matt 	error = bus_dmamem_alloc(sc->sc_dmat, size, alignment, alignment,
    577  1.26     enami 	    segs, 1, &nsegs, flags);
    578   1.5      matt 	if (error)
    579   1.5      matt 		goto cleanup;
    580   1.5      matt 
    581   1.5      matt 	steps = 1;
    582   1.5      matt 	error = bus_dmamem_map(sc->sc_dmat, segs, nsegs, segs[0].ds_len,
    583  1.26     enami 	    kvap, flags);
    584   1.5      matt 	if (error)
    585   1.5      matt 		goto cleanup;
    586   1.5      matt 
    587   1.5      matt 	if (error == 0)
    588   1.5      matt 		error = bus_dmamap_create(sc->sc_dmat, size, 1, alignment,
    589  1.26     enami 		    size, flags, mapp);
    590   1.5      matt 	if (error)
    591   1.5      matt 		goto cleanup;
    592   1.5      matt 	if (error == 0)
    593  1.26     enami 		error = bus_dmamap_load(sc->sc_dmat, *mapp, *kvap, size, NULL,
    594  1.26     enami 		    flags);
    595   1.5      matt 	if (error)
    596   1.5      matt 		goto cleanup;
    597   1.5      matt 
    598  1.26     enami  cleanup:
    599   1.5      matt 	switch (steps) {
    600   1.5      matt 	case 1:
    601   1.5      matt 		bus_dmamem_free(sc->sc_dmat, segs, nsegs);
    602   1.5      matt 	}
    603   1.5      matt 
    604   1.5      matt 	return error;
    605   1.5      matt }
    606   1.5      matt #endif
    607   1.5      matt 
    608   1.3      onoe int
    609   1.3      onoe fwohci_print(void *aux, const char *pnp)
    610   1.3      onoe {
    611   1.3      onoe 	char *name = aux;
    612   1.3      onoe 
    613   1.3      onoe 	if (pnp)
    614   1.3      onoe 		printf("%s at %s", name, pnp);
    615   1.3      onoe 
    616  1.48  drochner 	return UNCONF;
    617   1.3      onoe }
    618   1.3      onoe 
    619   1.7      onoe static void
    620   1.7      onoe fwohci_hw_init(struct fwohci_softc *sc)
    621   1.7      onoe {
    622   1.7      onoe 	int i;
    623   1.7      onoe 	u_int32_t val;
    624   1.7      onoe 
    625   1.7      onoe 	/*
    626   1.7      onoe 	 * Software Reset.
    627   1.7      onoe 	 */
    628   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet, OHCI_HCControl_SoftReset);
    629   1.7      onoe 	for (i = 0; i < OHCI_LOOP; i++) {
    630   1.7      onoe 		val = OHCI_CSR_READ(sc, OHCI_REG_HCControlClear);
    631   1.7      onoe 		if ((val & OHCI_HCControl_SoftReset) == 0)
    632   1.7      onoe 			break;
    633  1.36      onoe 		DELAY(10);
    634   1.7      onoe 	}
    635   1.7      onoe 
    636   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet, OHCI_HCControl_LPS);
    637   1.7      onoe 
    638   1.7      onoe 	/*
    639   1.7      onoe 	 * First, initilize CSRs with undefined value to default settings.
    640   1.7      onoe 	 */
    641   1.7      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_BusOptions);
    642   1.7      onoe 	val |= OHCI_BusOptions_ISC | OHCI_BusOptions_CMC;
    643   1.7      onoe #if 0
    644   1.7      onoe 	val |= OHCI_BusOptions_BMC | OHCI_BusOptions_IRMC;
    645   1.7      onoe #else
    646   1.7      onoe 	val &= ~(OHCI_BusOptions_BMC | OHCI_BusOptions_IRMC);
    647   1.7      onoe #endif
    648   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_BusOptions, val);
    649   1.7      onoe 	for (i = 0; i < sc->sc_isoctx; i++) {
    650   1.7      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, i, OHCI_SUBREG_ContextControlClear,
    651   1.7      onoe 		    ~0);
    652   1.7      onoe 	}
    653   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_LinkControlClear, ~0);
    654   1.7      onoe 
    655   1.7      onoe 	fwohci_configrom_init(sc);
    656   1.7      onoe 	fwohci_selfid_init(sc);
    657  1.36      onoe 	fwohci_buf_init_rx(sc);
    658   1.7      onoe 	fwohci_csr_init(sc);
    659   1.7      onoe 
    660   1.7      onoe 	/*
    661   1.7      onoe 	 * Final CSR settings.
    662   1.7      onoe 	 */
    663   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_LinkControlSet,
    664   1.7      onoe 	    OHCI_LinkControl_CycleTimerEnable |
    665   1.7      onoe 	    OHCI_LinkControl_RcvSelfID | OHCI_LinkControl_RcvPhyPkt);
    666   1.7      onoe 
    667   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_ATRetries, 0x00000888);	/*XXX*/
    668   1.7      onoe 
    669   1.7      onoe 	/* clear receive filter */
    670   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IRMultiChanMaskHiClear, ~0);
    671   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IRMultiChanMaskLoClear, ~0);
    672   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_AsynchronousRequestFilterHiSet, 0x80000000);
    673   1.7      onoe 
    674   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlClear,
    675   1.7      onoe 	    OHCI_HCControl_NoByteSwapData | OHCI_HCControl_APhyEnhanceEnable);
    676  1.22     enami #if BYTE_ORDER == BIG_ENDIAN
    677  1.22     enami 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet,
    678  1.22     enami 	    OHCI_HCControl_NoByteSwapData);
    679  1.22     enami #endif
    680   1.7      onoe 
    681   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskClear, ~0);
    682   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskSet, OHCI_Int_BusReset |
    683   1.7      onoe 	    OHCI_Int_SelfIDComplete | OHCI_Int_IsochRx | OHCI_Int_IsochTx |
    684   1.7      onoe 	    OHCI_Int_RSPkt | OHCI_Int_RQPkt | OHCI_Int_ARRS | OHCI_Int_ARRQ |
    685   1.7      onoe 	    OHCI_Int_RespTxComplete | OHCI_Int_ReqTxComplete);
    686   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskSet, OHCI_Int_CycleTooLong |
    687   1.7      onoe 	    OHCI_Int_UnrecoverableError | OHCI_Int_CycleInconsistent |
    688   1.7      onoe 	    OHCI_Int_LockRespErr | OHCI_Int_PostedWriteErr);
    689   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IsoXmitIntMaskSet, ~0);
    690   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IsoRecvIntMaskSet, ~0);
    691   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskSet, OHCI_Int_MasterEnable);
    692   1.7      onoe 
    693   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet, OHCI_HCControl_LinkEnable);
    694   1.7      onoe 
    695   1.7      onoe 	/*
    696   1.7      onoe 	 * Start the receivers
    697   1.7      onoe 	 */
    698  1.36      onoe 	fwohci_buf_start_rx(sc);
    699   1.7      onoe }
    700   1.7      onoe 
    701   1.7      onoe static void
    702   1.7      onoe fwohci_power(int why, void *arg)
    703   1.7      onoe {
    704   1.7      onoe 	struct fwohci_softc *sc = arg;
    705   1.7      onoe 	int s;
    706   1.7      onoe 
    707  1.24       jmc 	s = splbio();
    708  1.10  takemura 	switch (why) {
    709  1.10  takemura 	case PWR_SUSPEND:
    710  1.10  takemura 	case PWR_STANDBY:
    711  1.10  takemura 		fwohci_shutdown(sc);
    712  1.10  takemura 		break;
    713  1.10  takemura 	case PWR_RESUME:
    714   1.7      onoe 		fwohci_hw_init(sc);
    715   1.7      onoe 		fwohci_phy_busreset(sc);
    716  1.10  takemura 		break;
    717  1.10  takemura 	case PWR_SOFTSUSPEND:
    718  1.10  takemura 	case PWR_SOFTSTANDBY:
    719  1.10  takemura 	case PWR_SOFTRESUME:
    720  1.10  takemura 		break;
    721   1.7      onoe 	}
    722   1.7      onoe 	splx(s);
    723   1.7      onoe }
    724   1.7      onoe 
    725   1.7      onoe static void
    726   1.7      onoe fwohci_shutdown(void *arg)
    727   1.7      onoe {
    728   1.7      onoe 	struct fwohci_softc *sc = arg;
    729   1.7      onoe 	u_int32_t val;
    730   1.7      onoe 
    731   1.7      onoe 	callout_stop(&sc->sc_selfid_callout);
    732   1.7      onoe 	/* disable all interrupt */
    733   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskClear, OHCI_Int_MasterEnable);
    734  1.36      onoe 	fwohci_buf_stop_tx(sc);
    735  1.36      onoe 	fwohci_buf_stop_rx(sc);
    736   1.7      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_BusOptions);
    737   1.7      onoe 	val &= ~(OHCI_BusOptions_BMC | OHCI_BusOptions_ISC |
    738   1.7      onoe 		OHCI_BusOptions_CMC | OHCI_BusOptions_IRMC);
    739   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_BusOptions, val);
    740   1.7      onoe 	fwohci_phy_busreset(sc);
    741  1.36      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlClear, OHCI_HCControl_LinkEnable);
    742   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlClear, OHCI_HCControl_LPS);
    743   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet, OHCI_HCControl_SoftReset);
    744   1.7      onoe }
    745   1.7      onoe 
    746   1.3      onoe /*
    747   1.3      onoe  * COMMON FUNCTIONS
    748   1.3      onoe  */
    749   1.3      onoe 
    750   1.3      onoe /*
    751   1.7      onoe  * read the PHY Register.
    752   1.3      onoe  */
    753   1.7      onoe static u_int8_t
    754   1.7      onoe fwohci_phy_read(struct fwohci_softc *sc, u_int8_t reg)
    755   1.3      onoe {
    756   1.3      onoe 	int i;
    757   1.3      onoe 	u_int32_t val;
    758   1.3      onoe 
    759   1.3      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_PhyControl,
    760   1.3      onoe 	    OHCI_PhyControl_RdReg | (reg << OHCI_PhyControl_RegAddr_BITPOS));
    761   1.3      onoe 	for (i = 0; i < OHCI_LOOP; i++) {
    762   1.3      onoe 		if (OHCI_CSR_READ(sc, OHCI_REG_PhyControl) &
    763   1.3      onoe 		    OHCI_PhyControl_RdDone)
    764   1.3      onoe 			break;
    765  1.36      onoe 		DELAY(10);
    766   1.3      onoe 	}
    767   1.3      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_PhyControl);
    768   1.7      onoe 	return (val & OHCI_PhyControl_RdData) >> OHCI_PhyControl_RdData_BITPOS;
    769   1.7      onoe }
    770   1.7      onoe 
    771   1.7      onoe /*
    772   1.7      onoe  * write the PHY Register.
    773   1.7      onoe  */
    774   1.7      onoe static void
    775   1.7      onoe fwohci_phy_write(struct fwohci_softc *sc, u_int8_t reg, u_int8_t val)
    776   1.7      onoe {
    777   1.7      onoe 	int i;
    778   1.7      onoe 
    779   1.3      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_PhyControl, OHCI_PhyControl_WrReg |
    780   1.3      onoe 	    (reg << OHCI_PhyControl_RegAddr_BITPOS) |
    781   1.3      onoe 	    (val << OHCI_PhyControl_WrData_BITPOS));
    782   1.3      onoe 	for (i = 0; i < OHCI_LOOP; i++) {
    783   1.3      onoe 		if (!(OHCI_CSR_READ(sc, OHCI_REG_PhyControl) &
    784   1.3      onoe 		    OHCI_PhyControl_WrReg))
    785   1.3      onoe 			break;
    786  1.36      onoe 		DELAY(10);
    787   1.3      onoe 	}
    788   1.3      onoe }
    789   1.3      onoe 
    790   1.3      onoe /*
    791   1.7      onoe  * Initiate Bus Reset
    792   1.7      onoe  */
    793   1.7      onoe static void
    794   1.7      onoe fwohci_phy_busreset(struct fwohci_softc *sc)
    795   1.7      onoe {
    796   1.7      onoe 	int s;
    797   1.7      onoe 	u_int8_t val;
    798   1.7      onoe 
    799  1.24       jmc 	s = splbio();
    800  1.26     enami 	OHCI_CSR_WRITE(sc, OHCI_REG_IntEventClear,
    801   1.7      onoe 	    OHCI_Int_BusReset | OHCI_Int_SelfIDComplete);
    802   1.7      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_IntMaskSet, OHCI_Int_BusReset);
    803   1.7      onoe 	callout_stop(&sc->sc_selfid_callout);
    804   1.7      onoe 	val = fwohci_phy_read(sc, 1);
    805   1.7      onoe 	val = (val & 0x80) |			/* preserve RHB (force root) */
    806   1.7      onoe 	    0x40 |				/* Initiate Bus Reset */
    807   1.7      onoe 	    0x3f;				/* default GAP count */
    808   1.7      onoe 	fwohci_phy_write(sc, 1, val);
    809   1.7      onoe 	splx(s);
    810   1.7      onoe }
    811   1.7      onoe 
    812   1.7      onoe /*
    813   1.7      onoe  * PHY Packet
    814   1.7      onoe  */
    815   1.7      onoe static void
    816   1.7      onoe fwohci_phy_input(struct fwohci_softc *sc, struct fwohci_pkt *pkt)
    817   1.7      onoe {
    818   1.7      onoe 	u_int32_t val;
    819   1.7      onoe 
    820   1.7      onoe 	val = pkt->fp_hdr[1];
    821   1.7      onoe 	if (val != ~pkt->fp_hdr[2]) {
    822   1.7      onoe 		if (val == 0 && ((*pkt->fp_trail & 0x001f0000) >> 16) ==
    823   1.7      onoe 		    OHCI_CTXCTL_EVENT_BUS_RESET) {
    824  1.28       jmc 			DPRINTFN(1, ("fwohci_phy_input: BusReset: 0x%08x\n",
    825  1.28       jmc 			    pkt->fp_hdr[2]));
    826   1.7      onoe 		} else {
    827   1.7      onoe 			printf("%s: phy packet corrupted (0x%08x, 0x%08x)\n",
    828   1.7      onoe 			    sc->sc_sc1394.sc1394_dev.dv_xname, val,
    829   1.7      onoe 			    pkt->fp_hdr[2]);
    830   1.7      onoe 		}
    831   1.7      onoe 		return;
    832   1.7      onoe 	}
    833   1.7      onoe #ifdef FW_DEBUG
    834  1.33      onoe 	if (fwdebug > 1)
    835  1.33      onoe 		fwohci_show_phypkt(sc, val);
    836   1.7      onoe #endif
    837   1.7      onoe }
    838   1.7      onoe 
    839   1.7      onoe /*
    840   1.3      onoe  * Descriptor for context DMA.
    841   1.3      onoe  */
    842   1.3      onoe static int
    843   1.3      onoe fwohci_desc_alloc(struct fwohci_softc *sc)
    844   1.3      onoe {
    845   1.9      onoe 	int error, mapsize, dsize;
    846   1.3      onoe 
    847   1.3      onoe 	/*
    848   1.3      onoe 	 * allocate descriptor buffer
    849   1.3      onoe 	 */
    850   1.3      onoe 
    851   1.9      onoe 	sc->sc_descsize = OHCI_BUF_ARRQ_CNT + OHCI_BUF_ARRS_CNT +
    852   1.3      onoe 	    OHCI_BUF_ATRQ_CNT + OHCI_BUF_ATRS_CNT +
    853   1.9      onoe 	    OHCI_BUF_IR_CNT * sc->sc_isoctx + 2;
    854   1.9      onoe 	dsize = sizeof(struct fwohci_desc) * sc->sc_descsize;
    855   1.9      onoe 	mapsize = howmany(sc->sc_descsize, NBBY);
    856  1.49   tsutsui 	sc->sc_descmap = malloc(mapsize, M_DEVBUF, M_WAITOK|M_ZERO);
    857   1.3      onoe 
    858   1.9      onoe 	if ((error = bus_dmamem_alloc(sc->sc_dmat, dsize, PAGE_SIZE, 0,
    859   1.9      onoe 	    &sc->sc_dseg, 1, &sc->sc_dnseg, 0)) != 0) {
    860   1.3      onoe 		printf("%s: unable to allocate descriptor buffer, error = %d\n",
    861   1.3      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname, error);
    862   1.3      onoe 		goto fail_0;
    863   1.3      onoe 	}
    864   1.3      onoe 
    865   1.3      onoe 	if ((error = bus_dmamem_map(sc->sc_dmat, &sc->sc_dseg, sc->sc_dnseg,
    866   1.9      onoe 	    dsize, (caddr_t *)&sc->sc_desc, BUS_DMA_COHERENT | BUS_DMA_WAITOK))
    867   1.9      onoe 	    != 0) {
    868   1.3      onoe 		printf("%s: unable to map descriptor buffer, error = %d\n",
    869   1.3      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname, error);
    870   1.3      onoe 		goto fail_1;
    871   1.3      onoe 	}
    872   1.3      onoe 
    873   1.9      onoe 	if ((error = bus_dmamap_create(sc->sc_dmat, dsize, sc->sc_dnseg,
    874  1.11     enami 	    dsize, 0, BUS_DMA_WAITOK, &sc->sc_ddmamap)) != 0) {
    875   1.3      onoe 		printf("%s: unable to create descriptor buffer DMA map, "
    876   1.3      onoe 		    "error = %d\n", sc->sc_sc1394.sc1394_dev.dv_xname, error);
    877   1.3      onoe 		goto fail_2;
    878   1.3      onoe 	}
    879   1.3      onoe 
    880   1.3      onoe 	if ((error = bus_dmamap_load(sc->sc_dmat, sc->sc_ddmamap, sc->sc_desc,
    881   1.9      onoe 	    dsize, NULL, BUS_DMA_WAITOK)) != 0) {
    882   1.3      onoe 		printf("%s: unable to load descriptor buffer DMA map, "
    883   1.3      onoe 		    "error = %d\n", sc->sc_sc1394.sc1394_dev.dv_xname, error);
    884   1.3      onoe 		goto fail_3;
    885   1.3      onoe 	}
    886   1.3      onoe 
    887   1.3      onoe 	return 0;
    888   1.3      onoe 
    889   1.3      onoe   fail_3:
    890   1.3      onoe 	bus_dmamap_destroy(sc->sc_dmat, sc->sc_ddmamap);
    891   1.3      onoe   fail_2:
    892   1.9      onoe 	bus_dmamem_unmap(sc->sc_dmat, (caddr_t)sc->sc_desc, dsize);
    893   1.3      onoe   fail_1:
    894   1.3      onoe 	bus_dmamem_free(sc->sc_dmat, &sc->sc_dseg, sc->sc_dnseg);
    895   1.3      onoe   fail_0:
    896   1.3      onoe 	return error;
    897   1.3      onoe }
    898   1.3      onoe 
    899   1.9      onoe static struct fwohci_desc *
    900   1.9      onoe fwohci_desc_get(struct fwohci_softc *sc, int ndesc)
    901   1.9      onoe {
    902   1.9      onoe 	int i, n;
    903   1.9      onoe 
    904   1.9      onoe 	for (n = 0; n <= sc->sc_descsize - ndesc; n++) {
    905   1.9      onoe 		for (i = 0; ; i++) {
    906   1.9      onoe 			if (i == ndesc) {
    907   1.9      onoe 				for (i = 0; i < ndesc; i++)
    908   1.9      onoe 					setbit(sc->sc_descmap, n + i);
    909   1.9      onoe 				return sc->sc_desc + n;
    910   1.9      onoe 			}
    911   1.9      onoe 			if (isset(sc->sc_descmap, n + i))
    912   1.9      onoe 				break;
    913   1.9      onoe 		}
    914   1.9      onoe 	}
    915   1.9      onoe 	return NULL;
    916   1.9      onoe }
    917   1.9      onoe 
    918   1.9      onoe static void
    919   1.9      onoe fwohci_desc_put(struct fwohci_softc *sc, struct fwohci_desc *fd, int ndesc)
    920   1.9      onoe {
    921   1.9      onoe 	int i, n;
    922   1.9      onoe 
    923   1.9      onoe 	n = fd - sc->sc_desc;
    924   1.9      onoe 	for (i = 0; i < ndesc; i++, n++) {
    925  1.28       jmc #ifdef DIAGNOSTIC
    926   1.9      onoe 		if (isclr(sc->sc_descmap, n))
    927   1.9      onoe 			panic("fwohci_desc_put: duplicated free");
    928   1.9      onoe #endif
    929   1.9      onoe 		clrbit(sc->sc_descmap, n);
    930   1.9      onoe 	}
    931   1.9      onoe }
    932   1.9      onoe 
    933   1.3      onoe /*
    934   1.3      onoe  * Asyncronous/Isochronous Transmit/Receive Context
    935   1.3      onoe  */
    936   1.3      onoe static int
    937   1.3      onoe fwohci_ctx_alloc(struct fwohci_softc *sc, struct fwohci_ctx **fcp,
    938  1.40      haya     int bufcnt, int ctx, int ctxtype)
    939   1.3      onoe {
    940   1.3      onoe 	int i, error;
    941   1.3      onoe 	struct fwohci_ctx *fc;
    942   1.3      onoe 	struct fwohci_buf *fb;
    943   1.3      onoe 	struct fwohci_desc *fd;
    944  1.44      haya #if DOUBLEBUF
    945  1.40      haya 	int buf2cnt;
    946  1.44      haya #endif
    947   1.3      onoe 
    948  1.50       eeh 	fc = malloc(sizeof(*fc), M_DEVBUF, M_WAITOK|M_ZERO);
    949   1.3      onoe 	LIST_INIT(&fc->fc_handler);
    950   1.3      onoe 	TAILQ_INIT(&fc->fc_buf);
    951   1.3      onoe 	fc->fc_ctx = ctx;
    952  1.50       eeh 	fc->fc_buffers = fb = malloc(sizeof(*fb) * bufcnt, M_DEVBUF, M_WAITOK|M_ZERO);
    953   1.3      onoe 	fc->fc_bufcnt = bufcnt;
    954  1.40      haya #if DOUBLEBUF
    955  1.40      haya 	TAILQ_INIT(&fc->fc_buf2); /* for isochronous */
    956  1.40      haya 	if (ctxtype == FWOHCI_CTX_ISO_MULTI) {
    957  1.40      haya 		buf2cnt = bufcnt/2;
    958  1.40      haya 		bufcnt -= buf2cnt;
    959  1.40      haya 		if (buf2cnt == 0) {
    960  1.40      haya 			panic("cannot allocate iso buffer");
    961  1.40      haya 		}
    962  1.40      haya 	}
    963  1.40      haya #endif
    964   1.3      onoe 	for (i = 0; i < bufcnt; i++, fb++) {
    965   1.3      onoe 		if ((error = fwohci_buf_alloc(sc, fb)) != 0)
    966   1.3      onoe 			goto fail;
    967   1.9      onoe 		if ((fd = fwohci_desc_get(sc, 1)) == NULL) {
    968   1.9      onoe 			error = ENOBUFS;
    969   1.9      onoe 			goto fail;
    970   1.9      onoe 		}
    971   1.3      onoe 		fb->fb_desc = fd;
    972   1.3      onoe 		fb->fb_daddr = sc->sc_ddmamap->dm_segs[0].ds_addr +
    973   1.7      onoe 		    ((caddr_t)fd - (caddr_t)sc->sc_desc);
    974   1.3      onoe 		fd->fd_flags = OHCI_DESC_INPUT | OHCI_DESC_STATUS |
    975   1.3      onoe 		    OHCI_DESC_INTR_ALWAYS | OHCI_DESC_BRANCH;
    976   1.3      onoe 		fd->fd_reqcount = fb->fb_dmamap->dm_segs[0].ds_len;
    977   1.3      onoe 		fd->fd_data = fb->fb_dmamap->dm_segs[0].ds_addr;
    978   1.3      onoe 		TAILQ_INSERT_TAIL(&fc->fc_buf, fb, fb_list);
    979   1.3      onoe 	}
    980  1.40      haya #if DOUBLEBUF
    981  1.40      haya 	if (ctxtype == FWOHCI_CTX_ISO_MULTI) {
    982  1.40      haya 		for (i = bufcnt; i < bufcnt + buf2cnt; i++, fb++) {
    983  1.40      haya 			if ((error = fwohci_buf_alloc(sc, fb)) != 0)
    984  1.40      haya 				goto fail;
    985  1.40      haya 			if ((fd = fwohci_desc_get(sc, 1)) == NULL) {
    986  1.40      haya 				error = ENOBUFS;
    987  1.40      haya 				goto fail;
    988  1.40      haya 			}
    989  1.40      haya 			fb->fb_desc = fd;
    990  1.40      haya 			fb->fb_daddr = sc->sc_ddmamap->dm_segs[0].ds_addr +
    991  1.40      haya 			    ((caddr_t)fd - (caddr_t)sc->sc_desc);
    992  1.40      haya 			bus_dmamap_sync(sc->sc_dmat, sc->sc_ddmamap,
    993  1.40      haya 			    (caddr_t)fd - (caddr_t)sc->sc_desc, sizeof(struct fwohci_desc),
    994  1.40      haya 			    BUS_DMASYNC_PREWRITE);
    995  1.40      haya 			fd->fd_flags = OHCI_DESC_INPUT | OHCI_DESC_STATUS |
    996  1.40      haya 			    OHCI_DESC_INTR_ALWAYS | OHCI_DESC_BRANCH;
    997  1.40      haya 			fd->fd_reqcount = fb->fb_dmamap->dm_segs[0].ds_len;
    998  1.40      haya 			fd->fd_data = fb->fb_dmamap->dm_segs[0].ds_addr;
    999  1.40      haya 			TAILQ_INSERT_TAIL(&fc->fc_buf2, fb, fb_list);
   1000  1.40      haya 			bus_dmamap_sync(sc->sc_dmat, sc->sc_ddmamap,
   1001  1.40      haya 			    (caddr_t)fd - (caddr_t)sc->sc_desc, sizeof(struct fwohci_desc),
   1002  1.40      haya 			    BUS_DMASYNC_POSTWRITE);
   1003  1.40      haya 		}
   1004  1.40      haya 	}
   1005  1.40      haya #endif /* DOUBLEBUF */
   1006  1.40      haya 	fc->fc_type = ctxtype;
   1007   1.3      onoe 	*fcp = fc;
   1008   1.3      onoe 	return 0;
   1009   1.3      onoe 
   1010   1.3      onoe   fail:
   1011  1.38      onoe 	while (i-- > 0) {
   1012  1.38      onoe 		fb--;
   1013  1.38      onoe 		if (fb->fb_desc)
   1014  1.38      onoe 			fwohci_desc_put(sc, fb->fb_desc, 1);
   1015  1.38      onoe 		fwohci_buf_free(sc, fb);
   1016  1.38      onoe 	}
   1017   1.3      onoe 	free(fc, M_DEVBUF);
   1018   1.3      onoe 	return error;
   1019   1.3      onoe }
   1020   1.3      onoe 
   1021   1.3      onoe static void
   1022   1.9      onoe fwohci_ctx_free(struct fwohci_softc *sc, struct fwohci_ctx *fc)
   1023   1.9      onoe {
   1024   1.9      onoe 	struct fwohci_buf *fb;
   1025   1.9      onoe 	struct fwohci_handler *fh;
   1026   1.9      onoe 
   1027  1.42      haya #if DOUBLEBUF
   1028  1.44      haya 	if ((fc->fc_type == FWOHCI_CTX_ISO_MULTI) &&
   1029  1.44      haya 	    (TAILQ_FIRST(&fc->fc_buf) > TAILQ_FIRST(&fc->fc_buf2))) {
   1030  1.42      haya 		struct fwohci_buf_s fctmp;
   1031  1.42      haya 
   1032  1.42      haya 		fctmp = fc->fc_buf;
   1033  1.42      haya 		fc->fc_buf = fc->fc_buf2;
   1034  1.42      haya 		fc->fc_buf2 = fctmp;
   1035  1.42      haya 	}
   1036  1.42      haya #endif
   1037   1.9      onoe 	while ((fh = LIST_FIRST(&fc->fc_handler)) != NULL)
   1038   1.9      onoe 		fwohci_handler_set(sc, fh->fh_tcode, fh->fh_key1, fh->fh_key2,
   1039   1.9      onoe 		    NULL, NULL);
   1040   1.9      onoe 	while ((fb = TAILQ_FIRST(&fc->fc_buf)) != NULL) {
   1041   1.9      onoe 		TAILQ_REMOVE(&fc->fc_buf, fb, fb_list);
   1042  1.38      onoe 		if (fb->fb_desc)
   1043  1.38      onoe 			fwohci_desc_put(sc, fb->fb_desc, 1);
   1044   1.9      onoe 		fwohci_buf_free(sc, fb);
   1045   1.9      onoe 	}
   1046  1.40      haya #if DOUBLEBUF
   1047  1.40      haya 	while ((fb = TAILQ_FIRST(&fc->fc_buf2)) != NULL) {
   1048  1.40      haya 		TAILQ_REMOVE(&fc->fc_buf2, fb, fb_list);
   1049  1.40      haya 		if (fb->fb_desc)
   1050  1.40      haya 			fwohci_desc_put(sc, fb->fb_desc, 1);
   1051  1.40      haya 		fwohci_buf_free(sc, fb);
   1052  1.40      haya 	}
   1053  1.40      haya #endif /* DOUBLEBUF */
   1054  1.50       eeh 	free(fc->fc_buffers, M_DEVBUF);
   1055   1.9      onoe 	free(fc, M_DEVBUF);
   1056   1.9      onoe }
   1057   1.9      onoe 
   1058   1.9      onoe static void
   1059   1.3      onoe fwohci_ctx_init(struct fwohci_softc *sc, struct fwohci_ctx *fc)
   1060   1.3      onoe {
   1061   1.3      onoe 	struct fwohci_buf *fb, *nfb;
   1062   1.3      onoe 	struct fwohci_desc *fd;
   1063  1.19      onoe 	struct fwohci_handler *fh;
   1064   1.9      onoe 	int n;
   1065   1.3      onoe 
   1066   1.3      onoe 	for (fb = TAILQ_FIRST(&fc->fc_buf); fb != NULL; fb = nfb) {
   1067   1.3      onoe 		nfb = TAILQ_NEXT(fb, fb_list);
   1068   1.3      onoe 		fb->fb_off = 0;
   1069   1.3      onoe 		fd = fb->fb_desc;
   1070   1.3      onoe 		fd->fd_branch = (nfb != NULL) ? (nfb->fb_daddr | 1) : 0;
   1071   1.3      onoe 		fd->fd_rescount = fd->fd_reqcount;
   1072   1.3      onoe 	}
   1073   1.9      onoe 
   1074  1.40      haya #if DOUBLEBUF
   1075  1.40      haya 	for (fb = TAILQ_FIRST(&fc->fc_buf2); fb != NULL; fb = nfb) {
   1076  1.40      haya 		bus_dmamap_sync(sc->sc_dmat, sc->sc_ddmamap,
   1077  1.40      haya 		    (caddr_t)fd - (caddr_t)sc->sc_desc, sizeof(struct fwohci_desc),
   1078  1.40      haya 		    BUS_DMASYNC_PREWRITE);
   1079  1.40      haya 		nfb = TAILQ_NEXT(fb, fb_list);
   1080  1.40      haya 		fb->fb_off = 0;
   1081  1.40      haya 		fd = fb->fb_desc;
   1082  1.40      haya 		fd->fd_branch = (nfb != NULL) ? (nfb->fb_daddr | 1) : 0;
   1083  1.40      haya 		fd->fd_rescount = fd->fd_reqcount;
   1084  1.40      haya 		bus_dmamap_sync(sc->sc_dmat, sc->sc_ddmamap,
   1085  1.40      haya 		    (caddr_t)fd - (caddr_t)sc->sc_desc, sizeof(struct fwohci_desc),
   1086  1.40      haya 		    BUS_DMASYNC_POSTWRITE);
   1087  1.40      haya 	}
   1088  1.40      haya #endif /* DOUBLEBUF */
   1089  1.40      haya 
   1090   1.9      onoe 	n = fc->fc_ctx;
   1091   1.9      onoe 	fb = TAILQ_FIRST(&fc->fc_buf);
   1092  1.40      haya 	if (fc->fc_type != FWOHCI_CTX_ASYNC) {
   1093   1.9      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, n, OHCI_SUBREG_CommandPtr,
   1094   1.9      onoe 		    fb->fb_daddr | 1);
   1095   1.9      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, n, OHCI_SUBREG_ContextControlClear,
   1096   1.9      onoe 		    OHCI_CTXCTL_RX_BUFFER_FILL |
   1097   1.9      onoe 		    OHCI_CTXCTL_RX_CYCLE_MATCH_ENABLE |
   1098   1.9      onoe 		    OHCI_CTXCTL_RX_MULTI_CHAN_MODE |
   1099   1.9      onoe 		    OHCI_CTXCTL_RX_DUAL_BUFFER_MODE);
   1100   1.9      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, n, OHCI_SUBREG_ContextControlSet,
   1101   1.9      onoe 		    OHCI_CTXCTL_RX_ISOCH_HEADER);
   1102  1.40      haya 		if (fc->fc_type == FWOHCI_CTX_ISO_MULTI) {
   1103  1.40      haya 			OHCI_SYNC_RX_DMA_WRITE(sc, n,
   1104  1.40      haya 			    OHCI_SUBREG_ContextControlSet,
   1105  1.40      haya 			    OHCI_CTXCTL_RX_BUFFER_FILL);
   1106  1.40      haya 		}
   1107  1.19      onoe 		fh = LIST_FIRST(&fc->fc_handler);
   1108  1.19      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, n, OHCI_SUBREG_ContextMatch,
   1109  1.19      onoe 		    (OHCI_CTXMATCH_TAG0 << fh->fh_key2) | fh->fh_key1);
   1110   1.9      onoe 	} else {
   1111   1.9      onoe 		OHCI_ASYNC_DMA_WRITE(sc, n, OHCI_SUBREG_CommandPtr,
   1112   1.9      onoe 		    fb->fb_daddr | 1);
   1113   1.9      onoe 	}
   1114   1.3      onoe }
   1115   1.3      onoe 
   1116   1.3      onoe /*
   1117   1.3      onoe  * DMA data buffer
   1118   1.3      onoe  */
   1119   1.3      onoe static int
   1120   1.3      onoe fwohci_buf_alloc(struct fwohci_softc *sc, struct fwohci_buf *fb)
   1121   1.3      onoe {
   1122   1.3      onoe 	int error;
   1123   1.3      onoe 
   1124   1.7      onoe 	if ((error = bus_dmamem_alloc(sc->sc_dmat, PAGE_SIZE, PAGE_SIZE,
   1125   1.7      onoe 	    PAGE_SIZE, &fb->fb_seg, 1, &fb->fb_nseg, BUS_DMA_WAITOK)) != 0) {
   1126   1.3      onoe 		printf("%s: unable to allocate buffer, error = %d\n",
   1127   1.3      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname, error);
   1128   1.3      onoe 		goto fail_0;
   1129   1.3      onoe 	}
   1130   1.3      onoe 
   1131   1.3      onoe 	if ((error = bus_dmamem_map(sc->sc_dmat, &fb->fb_seg,
   1132   1.7      onoe 	    fb->fb_nseg, PAGE_SIZE, &fb->fb_buf, BUS_DMA_WAITOK)) != 0) {
   1133   1.3      onoe 		printf("%s: unable to map buffer, error = %d\n",
   1134   1.3      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname, error);
   1135   1.3      onoe 		goto fail_1;
   1136   1.3      onoe 	}
   1137   1.3      onoe 
   1138   1.7      onoe 	if ((error = bus_dmamap_create(sc->sc_dmat, PAGE_SIZE, fb->fb_nseg,
   1139   1.7      onoe 	    PAGE_SIZE, 0, BUS_DMA_WAITOK, &fb->fb_dmamap)) != 0) {
   1140   1.3      onoe 		printf("%s: unable to create buffer DMA map, "
   1141   1.3      onoe 		    "error = %d\n", sc->sc_sc1394.sc1394_dev.dv_xname,
   1142   1.3      onoe 		    error);
   1143   1.3      onoe 		goto fail_2;
   1144   1.3      onoe 	}
   1145   1.3      onoe 
   1146   1.3      onoe 	if ((error = bus_dmamap_load(sc->sc_dmat, fb->fb_dmamap,
   1147   1.7      onoe 	    fb->fb_buf, PAGE_SIZE, NULL, BUS_DMA_WAITOK)) != 0) {
   1148   1.3      onoe 		printf("%s: unable to load buffer DMA map, "
   1149   1.3      onoe 		    "error = %d\n", sc->sc_sc1394.sc1394_dev.dv_xname,
   1150   1.3      onoe 		    error);
   1151   1.3      onoe 		goto fail_3;
   1152   1.3      onoe 	}
   1153   1.3      onoe 
   1154   1.3      onoe 	return 0;
   1155   1.3      onoe 
   1156   1.3      onoe 	bus_dmamap_unload(sc->sc_dmat, fb->fb_dmamap);
   1157   1.3      onoe   fail_3:
   1158   1.3      onoe 	bus_dmamap_destroy(sc->sc_dmat, fb->fb_dmamap);
   1159   1.3      onoe   fail_2:
   1160   1.7      onoe 	bus_dmamem_unmap(sc->sc_dmat, fb->fb_buf, PAGE_SIZE);
   1161   1.3      onoe   fail_1:
   1162   1.3      onoe 	bus_dmamem_free(sc->sc_dmat, &fb->fb_seg, fb->fb_nseg);
   1163   1.3      onoe   fail_0:
   1164   1.3      onoe 	return error;
   1165   1.3      onoe }
   1166   1.3      onoe 
   1167   1.3      onoe static void
   1168   1.3      onoe fwohci_buf_free(struct fwohci_softc *sc, struct fwohci_buf *fb)
   1169   1.3      onoe {
   1170   1.3      onoe 
   1171   1.3      onoe 	bus_dmamap_unload(sc->sc_dmat, fb->fb_dmamap);
   1172   1.3      onoe 	bus_dmamap_destroy(sc->sc_dmat, fb->fb_dmamap);
   1173   1.7      onoe 	bus_dmamem_unmap(sc->sc_dmat, fb->fb_buf, PAGE_SIZE);
   1174   1.3      onoe 	bus_dmamem_free(sc->sc_dmat, &fb->fb_seg, fb->fb_nseg);
   1175   1.3      onoe }
   1176   1.3      onoe 
   1177   1.3      onoe static void
   1178  1.36      onoe fwohci_buf_init_rx(struct fwohci_softc *sc)
   1179   1.3      onoe {
   1180   1.3      onoe 	int i;
   1181   1.3      onoe 
   1182   1.3      onoe 	/*
   1183   1.9      onoe 	 * Initialize for Asynchronous Receive Queue.
   1184   1.3      onoe 	 */
   1185   1.3      onoe 	fwohci_ctx_init(sc, sc->sc_ctx_arrq);
   1186   1.3      onoe 	fwohci_ctx_init(sc, sc->sc_ctx_arrs);
   1187   1.3      onoe 
   1188   1.3      onoe 	/*
   1189   1.9      onoe 	 * Initialize for Isochronous Receive Queue.
   1190   1.3      onoe 	 */
   1191   1.3      onoe 	for (i = 0; i < sc->sc_isoctx; i++) {
   1192   1.9      onoe 		if (sc->sc_ctx_ir[i] != NULL)
   1193   1.9      onoe 			fwohci_ctx_init(sc, sc->sc_ctx_ir[i]);
   1194   1.7      onoe 	}
   1195   1.7      onoe }
   1196   1.7      onoe 
   1197   1.7      onoe static void
   1198  1.36      onoe fwohci_buf_start_rx(struct fwohci_softc *sc)
   1199   1.7      onoe {
   1200   1.7      onoe 	int i;
   1201   1.7      onoe 
   1202   1.7      onoe 	OHCI_ASYNC_DMA_WRITE(sc, OHCI_CTX_ASYNC_RX_REQUEST,
   1203   1.7      onoe 	    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_RUN);
   1204   1.7      onoe 	OHCI_ASYNC_DMA_WRITE(sc, OHCI_CTX_ASYNC_RX_RESPONSE,
   1205   1.7      onoe 	    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_RUN);
   1206   1.7      onoe 	for (i = 0; i < sc->sc_isoctx; i++) {
   1207  1.36      onoe 		if (sc->sc_ctx_ir[i] != NULL)
   1208   1.3      onoe 			OHCI_SYNC_RX_DMA_WRITE(sc, i,
   1209   1.3      onoe 			    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_RUN);
   1210   1.3      onoe 	}
   1211   1.3      onoe }
   1212   1.3      onoe 
   1213   1.3      onoe static void
   1214  1.36      onoe fwohci_buf_stop_tx(struct fwohci_softc *sc)
   1215   1.7      onoe {
   1216  1.36      onoe 	int i;
   1217   1.7      onoe 
   1218   1.7      onoe 	OHCI_ASYNC_DMA_WRITE(sc, OHCI_CTX_ASYNC_TX_REQUEST,
   1219   1.7      onoe 	    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1220   1.7      onoe 	OHCI_ASYNC_DMA_WRITE(sc, OHCI_CTX_ASYNC_TX_RESPONSE,
   1221   1.7      onoe 	    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1222   1.7      onoe 
   1223   1.7      onoe 	/*
   1224   1.7      onoe 	 * Make sure the transmitter is stopped.
   1225   1.7      onoe 	 */
   1226  1.36      onoe 	for (i = 0; i < OHCI_LOOP; i++) {
   1227  1.36      onoe 		DELAY(10);
   1228   1.7      onoe 		if (OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_TX_REQUEST,
   1229   1.7      onoe 		    OHCI_SUBREG_ContextControlClear) & OHCI_CTXCTL_ACTIVE)
   1230   1.7      onoe 			continue;
   1231   1.7      onoe 		if (OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_TX_RESPONSE,
   1232   1.7      onoe 		    OHCI_SUBREG_ContextControlClear) & OHCI_CTXCTL_ACTIVE)
   1233   1.7      onoe 			continue;
   1234   1.7      onoe 		break;
   1235   1.7      onoe 	}
   1236  1.36      onoe 
   1237  1.36      onoe 	/*
   1238  1.36      onoe 	 * Initialize for Asynchronous Transmit Queue.
   1239  1.36      onoe 	 */
   1240  1.36      onoe 	fwohci_at_done(sc, sc->sc_ctx_atrq, 1);
   1241  1.36      onoe 	fwohci_at_done(sc, sc->sc_ctx_atrs, 1);
   1242  1.36      onoe }
   1243  1.36      onoe 
   1244  1.36      onoe static void
   1245  1.36      onoe fwohci_buf_stop_rx(struct fwohci_softc *sc)
   1246  1.36      onoe {
   1247  1.36      onoe 	int i;
   1248  1.36      onoe 
   1249  1.36      onoe 	OHCI_ASYNC_DMA_WRITE(sc, OHCI_CTX_ASYNC_RX_REQUEST,
   1250  1.36      onoe 	    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1251  1.36      onoe 	OHCI_ASYNC_DMA_WRITE(sc, OHCI_CTX_ASYNC_RX_RESPONSE,
   1252  1.36      onoe 	    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1253  1.36      onoe 	for (i = 0; i < sc->sc_isoctx; i++) {
   1254  1.36      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, i,
   1255  1.36      onoe 		    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1256  1.36      onoe 	}
   1257   1.7      onoe }
   1258   1.7      onoe 
   1259   1.7      onoe static void
   1260   1.3      onoe fwohci_buf_next(struct fwohci_softc *sc, struct fwohci_ctx *fc)
   1261   1.3      onoe {
   1262   1.3      onoe 	struct fwohci_buf *fb, *tfb;
   1263   1.3      onoe 
   1264  1.40      haya #if DOUBLEBUF
   1265  1.40      haya 	if (fc->fc_type != FWOHCI_CTX_ISO_MULTI) {
   1266  1.40      haya #endif
   1267  1.40      haya 		while ((fb = TAILQ_FIRST(&fc->fc_buf)) != NULL) {
   1268  1.40      haya 			if (fc->fc_type) {
   1269  1.40      haya 				if (fb->fb_off == 0)
   1270  1.40      haya 					break;
   1271  1.40      haya 			} else {
   1272  1.40      haya 				if (fb->fb_off != fb->fb_desc->fd_reqcount ||
   1273  1.40      haya 				    fb->fb_desc->fd_rescount != 0)
   1274  1.40      haya 					break;
   1275  1.40      haya 			}
   1276  1.40      haya 			TAILQ_REMOVE(&fc->fc_buf, fb, fb_list);
   1277  1.40      haya 			fb->fb_desc->fd_rescount = fb->fb_desc->fd_reqcount;
   1278  1.40      haya 			fb->fb_off = 0;
   1279  1.40      haya 			fb->fb_desc->fd_branch = 0;
   1280  1.40      haya 			tfb = TAILQ_LAST(&fc->fc_buf, fwohci_buf_s);
   1281  1.40      haya 			tfb->fb_desc->fd_branch = fb->fb_daddr | 1;
   1282  1.40      haya 			TAILQ_INSERT_TAIL(&fc->fc_buf, fb, fb_list);
   1283  1.40      haya 		}
   1284  1.40      haya #if DOUBLEBUF
   1285  1.40      haya 	} else {
   1286  1.40      haya 		struct fwohci_buf_s fctmp;
   1287  1.40      haya 
   1288  1.40      haya 		/* cleaning buffer */
   1289  1.40      haya 		for (fb = TAILQ_FIRST(&fc->fc_buf); fb != NULL;
   1290  1.40      haya 		     fb = TAILQ_NEXT(fb, fb_list)) {
   1291  1.40      haya 			fb->fb_off = 0;
   1292  1.40      haya 			fb->fb_desc->fd_rescount = fb->fb_desc->fd_reqcount;
   1293  1.36      onoe 		}
   1294  1.40      haya 
   1295  1.40      haya 		/* rotating buffer */
   1296  1.40      haya 		fctmp = fc->fc_buf;
   1297  1.40      haya 		fc->fc_buf = fc->fc_buf2;
   1298  1.40      haya 		fc->fc_buf2 = fctmp;
   1299   1.3      onoe 	}
   1300  1.40      haya #endif
   1301   1.3      onoe }
   1302   1.3      onoe 
   1303   1.3      onoe static int
   1304  1.39      onoe fwohci_buf_pktget(struct fwohci_softc *sc, struct fwohci_buf **fbp, caddr_t *pp,
   1305   1.3      onoe     int len)
   1306   1.3      onoe {
   1307   1.3      onoe 	struct fwohci_buf *fb;
   1308   1.3      onoe 	struct fwohci_desc *fd;
   1309   1.3      onoe 	int bufend;
   1310   1.3      onoe 
   1311  1.39      onoe 	fb = *fbp;
   1312   1.3      onoe   again:
   1313   1.3      onoe 	fd = fb->fb_desc;
   1314  1.28       jmc 	DPRINTFN(1, ("fwohci_buf_pktget: desc %ld, off %d, req %d, res %d,"
   1315  1.28       jmc 	    " len %d, avail %d\n", (long)(fd - sc->sc_desc), fb->fb_off,
   1316  1.28       jmc 	    fd->fd_reqcount, fd->fd_rescount, len,
   1317  1.28       jmc 	    fd->fd_reqcount - fd->fd_rescount - fb->fb_off));
   1318   1.3      onoe 	bufend = fd->fd_reqcount - fd->fd_rescount;
   1319   1.3      onoe 	if (fb->fb_off >= bufend) {
   1320  1.40      haya 		DPRINTFN(5, ("buf %x finish req %d res %d off %d ",
   1321  1.40      haya 		    fb->fb_desc->fd_data, fd->fd_reqcount, fd->fd_rescount,
   1322  1.40      haya 		    fb->fb_off));
   1323   1.3      onoe 		if (fd->fd_rescount == 0) {
   1324  1.39      onoe 			*fbp = fb = TAILQ_NEXT(fb, fb_list);
   1325  1.39      onoe 			if (fb != NULL)
   1326   1.3      onoe 				goto again;
   1327   1.3      onoe 		}
   1328   1.3      onoe 		return 0;
   1329   1.3      onoe 	}
   1330   1.3      onoe 	if (fb->fb_off + len > bufend)
   1331   1.3      onoe 		len = bufend - fb->fb_off;
   1332   1.7      onoe 	bus_dmamap_sync(sc->sc_dmat, fb->fb_dmamap, fb->fb_off, len,
   1333   1.7      onoe 	    BUS_DMASYNC_POSTREAD);
   1334   1.3      onoe 	*pp = fb->fb_buf + fb->fb_off;
   1335   1.3      onoe 	fb->fb_off += roundup(len, 4);
   1336   1.3      onoe 	return len;
   1337   1.3      onoe }
   1338   1.3      onoe 
   1339   1.3      onoe static int
   1340   1.3      onoe fwohci_buf_input(struct fwohci_softc *sc, struct fwohci_ctx *fc,
   1341   1.3      onoe     struct fwohci_pkt *pkt)
   1342   1.3      onoe {
   1343   1.3      onoe 	caddr_t p;
   1344  1.39      onoe 	struct fwohci_buf *fb;
   1345   1.3      onoe 	int len, count, i;
   1346   1.3      onoe 
   1347   1.9      onoe 	memset(pkt, 0, sizeof(*pkt));
   1348   1.9      onoe 	pkt->fp_uio.uio_iov = pkt->fp_iov;
   1349   1.9      onoe 	pkt->fp_uio.uio_rw = UIO_WRITE;
   1350   1.9      onoe 	pkt->fp_uio.uio_segflg = UIO_SYSSPACE;
   1351   1.9      onoe 
   1352   1.3      onoe 	/* get first quadlet */
   1353  1.39      onoe 	fb = TAILQ_FIRST(&fc->fc_buf);
   1354   1.3      onoe 	count = 4;
   1355  1.39      onoe 	len = fwohci_buf_pktget(sc, &fb, &p, count);
   1356   1.3      onoe 	if (len <= 0) {
   1357  1.28       jmc 		DPRINTFN(1, ("fwohci_buf_input: no input for %d\n",
   1358  1.28       jmc 		    fc->fc_ctx));
   1359   1.3      onoe 		return 0;
   1360   1.3      onoe 	}
   1361   1.3      onoe 	pkt->fp_hdr[0] = *(u_int32_t *)p;
   1362   1.3      onoe 	pkt->fp_tcode = (pkt->fp_hdr[0] & 0x000000f0) >> 4;
   1363   1.3      onoe 	switch (pkt->fp_tcode) {
   1364   1.3      onoe 	case IEEE1394_TCODE_WRITE_REQ_QUAD:
   1365   1.3      onoe 	case IEEE1394_TCODE_READ_RESP_QUAD:
   1366   1.3      onoe 		pkt->fp_hlen = 12;
   1367   1.3      onoe 		pkt->fp_dlen = 4;
   1368   1.3      onoe 		break;
   1369  1.24       jmc 	case IEEE1394_TCODE_READ_REQ_BLOCK:
   1370  1.24       jmc 		pkt->fp_hlen = 16;
   1371  1.26     enami 		pkt->fp_dlen = 0;
   1372  1.26     enami 		break;
   1373  1.26     enami 	case IEEE1394_TCODE_WRITE_REQ_BLOCK:
   1374  1.26     enami 	case IEEE1394_TCODE_READ_RESP_BLOCK:
   1375   1.3      onoe 	case IEEE1394_TCODE_LOCK_REQ:
   1376   1.3      onoe 	case IEEE1394_TCODE_LOCK_RESP:
   1377   1.3      onoe 		pkt->fp_hlen = 16;
   1378   1.3      onoe 		break;
   1379  1.40      haya 	case IEEE1394_TCODE_STREAM_DATA:
   1380  1.39      onoe #ifdef DIAGNOSTIC
   1381  1.40      haya 		if (fc->fc_type == FWOHCI_CTX_ISO_MULTI)
   1382  1.40      haya #endif
   1383  1.40      haya 		{
   1384  1.40      haya 			pkt->fp_hlen = 4;
   1385  1.40      haya 			pkt->fp_dlen = pkt->fp_hdr[0] >> 16;
   1386  1.40      haya 			DPRINTFN(5, ("[%d]", pkt->fp_dlen));
   1387  1.40      haya 			break;
   1388  1.40      haya 		}
   1389  1.40      haya #ifdef DIAGNOSTIC
   1390  1.40      haya 		else {
   1391  1.40      haya 			printf("fwohci_buf_input: bad tcode: STREAM_DATA\n");
   1392  1.40      haya 			return 0;
   1393  1.40      haya 		}
   1394  1.36      onoe #endif
   1395   1.3      onoe 	default:
   1396   1.3      onoe 		pkt->fp_hlen = 12;
   1397   1.3      onoe 		pkt->fp_dlen = 0;
   1398   1.3      onoe 		break;
   1399   1.3      onoe 	}
   1400   1.3      onoe 
   1401   1.3      onoe 	/* get header */
   1402   1.3      onoe 	while (count < pkt->fp_hlen) {
   1403  1.39      onoe 		len = fwohci_buf_pktget(sc, &fb, &p, pkt->fp_hlen - count);
   1404   1.3      onoe 		if (len == 0) {
   1405   1.3      onoe 			printf("fwohci_buf_input: malformed input 1: %d\n",
   1406   1.3      onoe 			    pkt->fp_hlen - count);
   1407   1.3      onoe 			return 0;
   1408   1.3      onoe 		}
   1409   1.3      onoe 		memcpy((caddr_t)pkt->fp_hdr + count, p, len);
   1410   1.3      onoe 		count += len;
   1411   1.3      onoe 	}
   1412  1.36      onoe 	if (pkt->fp_hlen == 16 &&
   1413  1.26     enami 	    pkt->fp_tcode != IEEE1394_TCODE_READ_REQ_BLOCK)
   1414  1.26     enami 		pkt->fp_dlen = pkt->fp_hdr[3] >> 16;
   1415  1.28       jmc 	DPRINTFN(1, ("fwohci_buf_input: tcode=0x%x, hlen=%d, dlen=%d\n",
   1416  1.28       jmc 	    pkt->fp_tcode, pkt->fp_hlen, pkt->fp_dlen));
   1417   1.3      onoe 
   1418   1.3      onoe 	/* get data */
   1419   1.3      onoe 	count = 0;
   1420   1.3      onoe 	i = 0;
   1421   1.3      onoe 	while (count < pkt->fp_dlen) {
   1422  1.39      onoe 		len = fwohci_buf_pktget(sc, &fb,
   1423   1.3      onoe 		    (caddr_t *)&pkt->fp_iov[i].iov_base,
   1424   1.3      onoe 		    pkt->fp_dlen - count);
   1425   1.3      onoe 		if (len == 0) {
   1426   1.3      onoe 			printf("fwohci_buf_input: malformed input 2: %d\n",
   1427  1.36      onoe 			    pkt->fp_dlen - count);
   1428   1.3      onoe 			return 0;
   1429   1.3      onoe 		}
   1430   1.3      onoe 		pkt->fp_iov[i++].iov_len = len;
   1431   1.3      onoe 		count += len;
   1432   1.3      onoe 	}
   1433   1.9      onoe 	pkt->fp_uio.uio_iovcnt = i;
   1434   1.9      onoe 	pkt->fp_uio.uio_resid = count;
   1435   1.3      onoe 
   1436  1.36      onoe 	/* get trailer */
   1437  1.39      onoe 	len = fwohci_buf_pktget(sc, &fb, (caddr_t *)&pkt->fp_trail,
   1438  1.36      onoe 	    sizeof(*pkt->fp_trail));
   1439  1.36      onoe 	if (len <= 0) {
   1440  1.36      onoe 		printf("fwohci_buf_input: malformed input 3: %d\n",
   1441  1.36      onoe 		    pkt->fp_hlen - count);
   1442  1.36      onoe 		return 0;
   1443  1.36      onoe 	}
   1444  1.36      onoe 	return 1;
   1445  1.36      onoe }
   1446  1.36      onoe 
   1447  1.36      onoe static int
   1448  1.36      onoe fwohci_buf_input_ppb(struct fwohci_softc *sc, struct fwohci_ctx *fc,
   1449  1.36      onoe     struct fwohci_pkt *pkt)
   1450  1.36      onoe {
   1451  1.36      onoe 	caddr_t p;
   1452  1.36      onoe 	int len;
   1453  1.36      onoe 	struct fwohci_buf *fb;
   1454  1.36      onoe 	struct fwohci_desc *fd;
   1455  1.36      onoe 
   1456  1.40      haya 	if (fc->fc_type ==  FWOHCI_CTX_ISO_MULTI) {
   1457  1.40      haya 		return fwohci_buf_input(sc, fc, pkt);
   1458  1.40      haya 	}
   1459  1.40      haya 
   1460  1.36      onoe 	memset(pkt, 0, sizeof(*pkt));
   1461  1.36      onoe 	pkt->fp_uio.uio_iov = pkt->fp_iov;
   1462  1.36      onoe 	pkt->fp_uio.uio_rw = UIO_WRITE;
   1463  1.36      onoe 	pkt->fp_uio.uio_segflg = UIO_SYSSPACE;
   1464  1.36      onoe 
   1465  1.36      onoe 	for (fb = TAILQ_FIRST(&fc->fc_buf); ; fb = TAILQ_NEXT(fb, fb_list)) {
   1466  1.36      onoe 		if (fb == NULL)
   1467   1.3      onoe 			return 0;
   1468  1.36      onoe 		if (fb->fb_off == 0)
   1469  1.36      onoe 			break;
   1470  1.36      onoe 	}
   1471  1.36      onoe 	fd = fb->fb_desc;
   1472  1.36      onoe 	len = fd->fd_reqcount - fd->fd_rescount;
   1473  1.36      onoe 	if (len == 0)
   1474  1.36      onoe 		return 0;
   1475  1.36      onoe 	bus_dmamap_sync(sc->sc_dmat, fb->fb_dmamap, fb->fb_off, len,
   1476  1.36      onoe 	    BUS_DMASYNC_POSTREAD);
   1477  1.36      onoe 
   1478  1.36      onoe 	p = fb->fb_buf;
   1479  1.36      onoe 	fb->fb_off += roundup(len, 4);
   1480  1.36      onoe 	if (len < 8) {
   1481  1.36      onoe 		printf("fwohci_buf_input_ppb: malformed input 1: %d\n", len);
   1482  1.36      onoe 		return 0;
   1483  1.36      onoe 	}
   1484  1.36      onoe 
   1485  1.36      onoe 	/*
   1486  1.36      onoe 	 * get trailer first, may be bogus data unless status update
   1487  1.36      onoe 	 * in descriptor is set.
   1488  1.36      onoe 	 */
   1489  1.36      onoe 	pkt->fp_trail = (u_int32_t *)p;
   1490  1.36      onoe 	*pkt->fp_trail = (*pkt->fp_trail & 0xffff) | (fd->fd_status << 16);
   1491  1.36      onoe 	pkt->fp_hdr[0] = ((u_int32_t *)p)[1];
   1492  1.36      onoe 	pkt->fp_tcode = (pkt->fp_hdr[0] & 0x000000f0) >> 4;
   1493  1.39      onoe #ifdef DIAGNOSTIC
   1494  1.36      onoe 	if (pkt->fp_tcode != IEEE1394_TCODE_STREAM_DATA) {
   1495  1.36      onoe 		printf("fwohci_buf_input_ppb: bad tcode: 0x%x\n",
   1496  1.36      onoe 		    pkt->fp_tcode);
   1497  1.36      onoe 		return 0;
   1498  1.36      onoe 	}
   1499  1.36      onoe #endif
   1500  1.36      onoe 	pkt->fp_hlen = 4;
   1501  1.36      onoe 	pkt->fp_dlen = pkt->fp_hdr[0] >> 16;
   1502  1.36      onoe 	p += 8;
   1503  1.36      onoe 	len -= 8;
   1504  1.36      onoe 	if (pkt->fp_dlen != len) {
   1505  1.36      onoe 		printf("fwohci_buf_input_ppb: malformed input 2: %d != %d\n",
   1506  1.36      onoe 		    pkt->fp_dlen, len);
   1507  1.36      onoe 		return 0;
   1508   1.3      onoe 	}
   1509  1.36      onoe 	DPRINTFN(1, ("fwohci_buf_input_ppb: tcode=0x%x, hlen=%d, dlen=%d\n",
   1510  1.36      onoe 	    pkt->fp_tcode, pkt->fp_hlen, pkt->fp_dlen));
   1511  1.36      onoe 	pkt->fp_iov[0].iov_base = p;
   1512  1.36      onoe 	pkt->fp_iov[0].iov_len = len;
   1513  1.36      onoe 	pkt->fp_uio.uio_iovcnt = 0;
   1514  1.36      onoe 	pkt->fp_uio.uio_resid = len;
   1515   1.3      onoe 	return 1;
   1516   1.3      onoe }
   1517   1.3      onoe 
   1518   1.3      onoe static int
   1519   1.3      onoe fwohci_handler_set(struct fwohci_softc *sc,
   1520   1.3      onoe     int tcode, u_int32_t key1, u_int32_t key2,
   1521   1.3      onoe     int (*handler)(struct fwohci_softc *, void *, struct fwohci_pkt *),
   1522   1.3      onoe     void *arg)
   1523   1.3      onoe {
   1524   1.3      onoe 	struct fwohci_ctx *fc;
   1525   1.3      onoe 	struct fwohci_handler *fh;
   1526   1.9      onoe 	int i, j;
   1527   1.3      onoe 
   1528  1.26     enami 	if (tcode == IEEE1394_TCODE_STREAM_DATA) {
   1529  1.40      haya 		int isasync = key1 & OHCI_ASYNC_STREAM;
   1530  1.40      haya 
   1531  1.40      haya 		key1 &= IEEE1394_ISOCH_MASK;
   1532  1.26     enami 		j = sc->sc_isoctx;
   1533   1.9      onoe 		fh = NULL;
   1534   1.9      onoe 		for (i = 0; i < sc->sc_isoctx; i++) {
   1535   1.9      onoe 			if ((fc = sc->sc_ctx_ir[i]) == NULL) {
   1536   1.9      onoe 				if (j == sc->sc_isoctx)
   1537   1.9      onoe 					j = i;
   1538   1.9      onoe 				continue;
   1539   1.3      onoe 			}
   1540   1.3      onoe 			fh = LIST_FIRST(&fc->fc_handler);
   1541   1.9      onoe 			if (fh->fh_tcode == tcode &&
   1542   1.9      onoe 			    fh->fh_key1 == key1 && fh->fh_key2 == key2)
   1543   1.3      onoe 				break;
   1544   1.9      onoe 			fh = NULL;
   1545   1.9      onoe 		}
   1546   1.9      onoe 		if (fh == NULL) {
   1547   1.9      onoe 			if (handler == NULL)
   1548   1.9      onoe 				return 0;
   1549   1.9      onoe 			if (j == sc->sc_isoctx) {
   1550  1.28       jmc 				DPRINTF(("fwohci_handler_set: no more free "
   1551  1.28       jmc 				    "context\n"));
   1552   1.9      onoe 				return ENOMEM;
   1553   1.9      onoe 			}
   1554   1.9      onoe 			if ((fc = sc->sc_ctx_ir[j]) == NULL) {
   1555  1.40      haya 				fwohci_ctx_alloc(sc, &fc, OHCI_BUF_IR_CNT, j,
   1556  1.40      haya 				    isasync ? FWOHCI_CTX_ISO_SINGLE :
   1557  1.40      haya 				    FWOHCI_CTX_ISO_MULTI);
   1558   1.9      onoe 				sc->sc_ctx_ir[j] = fc;
   1559   1.9      onoe 			}
   1560   1.3      onoe 		}
   1561   1.3      onoe 	} else {
   1562   1.3      onoe 		switch (tcode) {
   1563   1.3      onoe 		case IEEE1394_TCODE_WRITE_REQ_QUAD:
   1564   1.3      onoe 		case IEEE1394_TCODE_WRITE_REQ_BLOCK:
   1565   1.3      onoe 		case IEEE1394_TCODE_READ_REQ_QUAD:
   1566   1.3      onoe 		case IEEE1394_TCODE_READ_REQ_BLOCK:
   1567   1.3      onoe 		case IEEE1394_TCODE_LOCK_REQ:
   1568   1.3      onoe 			fc = sc->sc_ctx_arrq;
   1569   1.3      onoe 			break;
   1570   1.3      onoe 		case IEEE1394_TCODE_WRITE_RESP:
   1571   1.3      onoe 		case IEEE1394_TCODE_READ_RESP_QUAD:
   1572   1.3      onoe 		case IEEE1394_TCODE_READ_RESP_BLOCK:
   1573   1.3      onoe 		case IEEE1394_TCODE_LOCK_RESP:
   1574   1.3      onoe 			fc = sc->sc_ctx_arrs;
   1575   1.3      onoe 			break;
   1576   1.3      onoe 		default:
   1577   1.3      onoe 			return EIO;
   1578   1.3      onoe 		}
   1579   1.3      onoe 		for (fh = LIST_FIRST(&fc->fc_handler); fh != NULL;
   1580   1.3      onoe 		    fh = LIST_NEXT(fh, fh_list)) {
   1581   1.9      onoe 			if (fh->fh_tcode == tcode &&
   1582   1.9      onoe 			    fh->fh_key1 == key1 && fh->fh_key2 == key2)
   1583   1.3      onoe 				break;
   1584   1.3      onoe 		}
   1585   1.3      onoe 	}
   1586   1.3      onoe 	if (handler == NULL) {
   1587   1.9      onoe 		if (fh != NULL) {
   1588  1.26     enami 			LIST_REMOVE(fh, fh_list);
   1589  1.26     enami 			free(fh, M_DEVBUF);
   1590   1.9      onoe 		}
   1591   1.9      onoe 		if (tcode == IEEE1394_TCODE_STREAM_DATA) {
   1592  1.38      onoe 			OHCI_SYNC_RX_DMA_WRITE(sc, fc->fc_ctx,
   1593  1.38      onoe 			    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1594  1.26     enami 			sc->sc_ctx_ir[fc->fc_ctx] = NULL;
   1595   1.9      onoe 			fwohci_ctx_free(sc, fc);
   1596   1.9      onoe 		}
   1597   1.3      onoe 		return 0;
   1598   1.3      onoe 	}
   1599   1.3      onoe 	if (fh == NULL) {
   1600  1.24       jmc 		fh = malloc(sizeof(*fh), M_DEVBUF, M_WAITOK);
   1601  1.26     enami 		LIST_INSERT_HEAD(&fc->fc_handler, fh, fh_list);
   1602   1.3      onoe 	}
   1603  1.26     enami 	fh->fh_tcode = tcode;
   1604   1.3      onoe 	fh->fh_key1 = key1;
   1605   1.3      onoe 	fh->fh_key2 = key2;
   1606   1.3      onoe 	fh->fh_handler = handler;
   1607   1.3      onoe 	fh->fh_handarg = arg;
   1608  1.28       jmc 	DPRINTFN(1, ("fwohci_handler_set: ctx %d, tcode %x, key 0x%x, 0x%x\n",
   1609  1.28       jmc 	    fc->fc_ctx, tcode, key1, key2));
   1610   1.3      onoe 
   1611   1.3      onoe 	if (tcode == IEEE1394_TCODE_STREAM_DATA) {
   1612   1.7      onoe 		fwohci_ctx_init(sc, fc);
   1613  1.28       jmc 		DPRINTFN(1, ("fwohci_handler_set: SYNC desc %ld\n",
   1614  1.28       jmc 		    (long)(TAILQ_FIRST(&fc->fc_buf)->fb_desc - sc->sc_desc)));
   1615   1.7      onoe 		OHCI_SYNC_RX_DMA_WRITE(sc, fc->fc_ctx,
   1616   1.7      onoe 		    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_RUN);
   1617   1.3      onoe 	}
   1618   1.3      onoe 	return 0;
   1619   1.3      onoe }
   1620   1.3      onoe 
   1621   1.3      onoe /*
   1622   1.3      onoe  * Asyncronous Receive Requests input frontend.
   1623   1.3      onoe  */
   1624   1.3      onoe static void
   1625   1.3      onoe fwohci_arrq_input(struct fwohci_softc *sc, struct fwohci_ctx *fc)
   1626   1.3      onoe {
   1627   1.3      onoe 	int rcode;
   1628   1.3      onoe 	u_int32_t key1, key2;
   1629   1.3      onoe 	struct fwohci_handler *fh;
   1630   1.3      onoe 	struct fwohci_pkt pkt, res;
   1631   1.3      onoe 
   1632  1.36      onoe 	/*
   1633  1.36      onoe 	 * Do not return if next packet is in the buffer, or the next
   1634  1.36      onoe 	 * packet cannot be received until the next receive interrupt.
   1635  1.36      onoe 	 */
   1636  1.26     enami 	while (fwohci_buf_input(sc, fc, &pkt)) {
   1637  1.26     enami 		if (pkt.fp_tcode == OHCI_TCODE_PHY) {
   1638  1.26     enami 			fwohci_phy_input(sc, &pkt);
   1639  1.36      onoe 			continue;
   1640  1.26     enami 		}
   1641  1.26     enami 		key1 = pkt.fp_hdr[1] & 0xffff;
   1642  1.26     enami 		key2 = pkt.fp_hdr[2];
   1643  1.26     enami 		memset(&res, 0, sizeof(res));
   1644  1.26     enami 		res.fp_uio.uio_rw = UIO_WRITE;
   1645  1.26     enami 		res.fp_uio.uio_segflg = UIO_SYSSPACE;
   1646  1.26     enami 		for (fh = LIST_FIRST(&fc->fc_handler); fh != NULL;
   1647  1.26     enami 		    fh = LIST_NEXT(fh, fh_list)) {
   1648  1.26     enami 			if (pkt.fp_tcode == fh->fh_tcode &&
   1649  1.26     enami 			    key1 == fh->fh_key1 &&
   1650  1.26     enami 			    key2 == fh->fh_key2) {
   1651  1.26     enami 				rcode = (*fh->fh_handler)(sc, fh->fh_handarg,
   1652  1.26     enami 				    &pkt);
   1653  1.26     enami 				break;
   1654  1.26     enami 			}
   1655  1.26     enami 		}
   1656  1.26     enami 		if (fh == NULL) {
   1657  1.26     enami 			rcode = IEEE1394_RCODE_ADDRESS_ERROR;
   1658  1.28       jmc 			DPRINTFN(1, ("fwohci_arrq_input: no listener: tcode "
   1659  1.28       jmc 			    "0x%x, addr=0x%04x %08x\n", pkt.fp_tcode, key1,
   1660  1.28       jmc 			    key2));
   1661  1.26     enami 		}
   1662  1.26     enami 		if (((*pkt.fp_trail & 0x001f0000) >> 16) !=
   1663  1.26     enami 		    OHCI_CTXCTL_EVENT_ACK_PENDING)
   1664  1.36      onoe 			continue;
   1665  1.26     enami 		if (rcode != -1)
   1666  1.26     enami 			fwohci_atrs_output(sc, rcode, &pkt, &res);
   1667  1.26     enami 	}
   1668  1.26     enami 	fwohci_buf_next(sc, fc);
   1669  1.26     enami 	OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   1670  1.26     enami 	    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_WAKE);
   1671   1.3      onoe }
   1672   1.3      onoe 
   1673  1.24       jmc 
   1674   1.3      onoe /*
   1675   1.3      onoe  * Asynchronous Receive Response input frontend.
   1676   1.3      onoe  */
   1677   1.3      onoe static void
   1678   1.3      onoe fwohci_arrs_input(struct fwohci_softc *sc, struct fwohci_ctx *fc)
   1679   1.3      onoe {
   1680  1.26     enami 	struct fwohci_pkt pkt;
   1681  1.26     enami 	struct fwohci_handler *fh;
   1682   1.3      onoe 	u_int16_t srcid;
   1683   1.3      onoe 	int rcode, tlabel;
   1684   1.3      onoe 
   1685  1.26     enami 	while (fwohci_buf_input(sc, fc, &pkt)) {
   1686  1.26     enami 		srcid = pkt.fp_hdr[1] >> 16;
   1687  1.26     enami 		rcode = (pkt.fp_hdr[1] & 0x0000f000) >> 12;
   1688  1.26     enami 		tlabel = (pkt.fp_hdr[0] & 0x0000fc00) >> 10;
   1689  1.28       jmc 		DPRINTFN(1, ("fwohci_arrs_input: tcode 0x%x, from 0x%04x,"
   1690  1.28       jmc 		    " tlabel 0x%x, rcode 0x%x, hlen %d, dlen %d\n",
   1691  1.28       jmc 		    pkt.fp_tcode, srcid, tlabel, rcode, pkt.fp_hlen,
   1692  1.28       jmc 		    pkt.fp_dlen));
   1693  1.26     enami 		for (fh = LIST_FIRST(&fc->fc_handler); fh != NULL;
   1694  1.26     enami 		    fh = LIST_NEXT(fh, fh_list)) {
   1695  1.26     enami 			if (pkt.fp_tcode == fh->fh_tcode &&
   1696  1.26     enami 			    (srcid & OHCI_NodeId_NodeNumber) == fh->fh_key1 &&
   1697  1.26     enami 			    tlabel == fh->fh_key2) {
   1698  1.26     enami 				(*fh->fh_handler)(sc, fh->fh_handarg, &pkt);
   1699  1.26     enami 				LIST_REMOVE(fh, fh_list);
   1700  1.26     enami 				free(fh, M_DEVBUF);
   1701  1.26     enami 				break;
   1702  1.26     enami 			}
   1703  1.26     enami 		}
   1704  1.31       jmc 		if (fh == NULL)
   1705  1.28       jmc 			DPRINTFN(1, ("fwohci_arrs_input: no listner\n"));
   1706  1.26     enami 	}
   1707  1.26     enami 	fwohci_buf_next(sc, fc);
   1708  1.26     enami 	OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   1709  1.26     enami 	    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_WAKE);
   1710   1.3      onoe }
   1711   1.3      onoe 
   1712   1.3      onoe /*
   1713   1.3      onoe  * Isochronous Receive input frontend.
   1714   1.3      onoe  */
   1715   1.3      onoe static void
   1716   1.3      onoe fwohci_ir_input(struct fwohci_softc *sc, struct fwohci_ctx *fc)
   1717   1.3      onoe {
   1718   1.3      onoe 	int rcode, chan, tag;
   1719   1.3      onoe 	struct iovec *iov;
   1720   1.3      onoe 	struct fwohci_handler *fh;
   1721   1.3      onoe 	struct fwohci_pkt pkt;
   1722   1.3      onoe 
   1723  1.40      haya #if DOUBLEBUF
   1724  1.40      haya 	if (fc->fc_type == FWOHCI_CTX_ISO_MULTI) {
   1725  1.40      haya 		struct fwohci_buf *fb;
   1726  1.40      haya 		int i;
   1727  1.40      haya 		u_int32_t reg;
   1728  1.40      haya 
   1729  1.40      haya 		/* stop dma engine before read buffer */
   1730  1.40      haya 		reg = OHCI_SYNC_RX_DMA_READ(sc, fc->fc_ctx,
   1731  1.40      haya 		    OHCI_SUBREG_ContextControlClear);
   1732  1.40      haya 		DPRINTFN(5, ("ir_input %08x =>", reg));
   1733  1.40      haya 		if (reg & OHCI_CTXCTL_RUN) {
   1734  1.40      haya 			OHCI_SYNC_RX_DMA_WRITE(sc, fc->fc_ctx,
   1735  1.40      haya 			    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1736  1.40      haya 		}
   1737  1.40      haya 		DPRINTFN(5, (" %08x\n", OHCI_SYNC_RX_DMA_READ(sc, fc->fc_ctx, OHCI_SUBREG_ContextControlClear)));
   1738  1.40      haya 
   1739  1.40      haya 		i = 0;
   1740  1.40      haya 		while ((reg = OHCI_SYNC_RX_DMA_READ(sc, fc->fc_ctx, OHCI_SUBREG_ContextControlSet)) & OHCI_CTXCTL_ACTIVE) {
   1741  1.40      haya 			delay(10);
   1742  1.40      haya 			if (++i > 10000) {
   1743  1.43   tsutsui 				printf("cannot stop dma engine 0x%08x\n", reg);
   1744  1.40      haya 				return;
   1745  1.40      haya 			}
   1746  1.40      haya 		}
   1747  1.40      haya 
   1748  1.40      haya 		/* rotate dma buffer */
   1749  1.40      haya 		fb = TAILQ_FIRST(&fc->fc_buf2);
   1750  1.40      haya 		OHCI_SYNC_RX_DMA_WRITE(sc, fc->fc_ctx, OHCI_SUBREG_CommandPtr,
   1751  1.40      haya 		    fb->fb_daddr | 1);
   1752  1.40      haya 		/* start dma engine */
   1753  1.40      haya 		OHCI_SYNC_RX_DMA_WRITE(sc, fc->fc_ctx,
   1754  1.40      haya 		    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_RUN);
   1755  1.40      haya 		OHCI_CSR_WRITE(sc, OHCI_REG_IsoRecvIntEventClear,
   1756  1.40      haya 		    (1 << fc->fc_ctx));
   1757  1.40      haya 	}
   1758  1.40      haya #endif
   1759  1.40      haya 
   1760  1.36      onoe 	while (fwohci_buf_input_ppb(sc, fc, &pkt)) {
   1761   1.3      onoe 		chan = (pkt.fp_hdr[0] & 0x00003f00) >> 8;
   1762   1.3      onoe 		tag  = (pkt.fp_hdr[0] & 0x0000c000) >> 14;
   1763  1.52       jmc 		DPRINTFN(1, ("fwohci_ir_input: hdr 0x%08x, tcode 0x%0x, hlen %d"
   1764  1.52       jmc 		    ", dlen %d\n", pkt.fp_hdr[0], pkt.fp_tcode, pkt.fp_hlen,
   1765  1.28       jmc 		    pkt.fp_dlen));
   1766   1.3      onoe 		if (tag == IEEE1394_TAG_GASP) {
   1767   1.3      onoe 			/*
   1768   1.3      onoe 			 * The pkt with tag=3 is GASP format.
   1769   1.3      onoe 			 * Move GASP header to header part.
   1770   1.3      onoe 			 */
   1771   1.3      onoe 			if (pkt.fp_dlen < 8)
   1772   1.3      onoe 				continue;
   1773   1.3      onoe 			iov = pkt.fp_iov;
   1774   1.3      onoe 			/* assuming pkt per buffer mode */
   1775   1.9      onoe 			pkt.fp_hdr[1] = ntohl(((u_int32_t *)iov->iov_base)[0]);
   1776   1.9      onoe 			pkt.fp_hdr[2] = ntohl(((u_int32_t *)iov->iov_base)[1]);
   1777   1.3      onoe 			iov->iov_base = (caddr_t)iov->iov_base + 8;
   1778   1.3      onoe 			iov->iov_len -= 8;
   1779   1.3      onoe 			pkt.fp_hlen += 8;
   1780   1.3      onoe 			pkt.fp_dlen -= 8;
   1781   1.3      onoe 		}
   1782  1.40      haya 		sc->sc_isopktcnt.ev_count++;
   1783   1.3      onoe 		for (fh = LIST_FIRST(&fc->fc_handler); fh != NULL;
   1784   1.3      onoe 		    fh = LIST_NEXT(fh, fh_list)) {
   1785   1.3      onoe 			if (pkt.fp_tcode == fh->fh_tcode &&
   1786   1.3      onoe 			    chan == fh->fh_key1 && tag == fh->fh_key2) {
   1787   1.3      onoe 				rcode = (*fh->fh_handler)(sc, fh->fh_handarg,
   1788   1.3      onoe 				    &pkt);
   1789   1.3      onoe 				break;
   1790   1.3      onoe 			}
   1791   1.3      onoe 		}
   1792   1.3      onoe #ifdef FW_DEBUG
   1793  1.28       jmc 		if (fh == NULL) {
   1794  1.28       jmc 			DPRINTFN(1, ("fwohci_ir_input: no handler\n"));
   1795  1.28       jmc 		} else {
   1796  1.28       jmc 			DPRINTFN(1, ("fwohci_ir_input: rcode %d\n", rcode));
   1797   1.8      onoe 		}
   1798   1.3      onoe #endif
   1799   1.3      onoe 	}
   1800   1.3      onoe 	fwohci_buf_next(sc, fc);
   1801  1.40      haya 
   1802  1.40      haya 	if (fc->fc_type == FWOHCI_CTX_ISO_SINGLE) {
   1803  1.40      haya 		OHCI_SYNC_RX_DMA_WRITE(sc, fc->fc_ctx,
   1804  1.40      haya 		    OHCI_SUBREG_ContextControlSet,
   1805  1.40      haya 		    OHCI_CTXCTL_WAKE);
   1806  1.40      haya 	}
   1807   1.3      onoe }
   1808   1.3      onoe 
   1809   1.3      onoe /*
   1810   1.3      onoe  * Asynchronous Transmit common routine.
   1811   1.3      onoe  */
   1812   1.3      onoe static int
   1813   1.3      onoe fwohci_at_output(struct fwohci_softc *sc, struct fwohci_ctx *fc,
   1814   1.3      onoe     struct fwohci_pkt *pkt)
   1815   1.3      onoe {
   1816   1.9      onoe 	struct fwohci_buf *fb;
   1817   1.3      onoe 	struct fwohci_desc *fd;
   1818  1.26     enami 	struct mbuf *m, *m0;
   1819   1.9      onoe 	int i, ndesc, error, off, len;
   1820   1.3      onoe 	u_int32_t val;
   1821  1.28       jmc #ifdef FW_DEBUG
   1822  1.28       jmc 	struct iovec *iov;
   1823  1.28       jmc #endif
   1824  1.28       jmc 
   1825  1.36      onoe 	if ((sc->sc_nodeid & OHCI_NodeId_NodeNumber) == IEEE1394_BCAST_PHY_ID)
   1826   1.9      onoe 		/* We can't send anything during selfid duration */
   1827  1.26     enami 		return EAGAIN;
   1828  1.26     enami 
   1829   1.3      onoe #ifdef FW_DEBUG
   1830  1.28       jmc 	DPRINTFN(1, ("fwohci_at_output: tcode 0x%x, hlen %d, dlen %d",
   1831  1.28       jmc 	    pkt->fp_tcode, pkt->fp_hlen, pkt->fp_dlen));
   1832  1.28       jmc 	for (i = 0; i < pkt->fp_hlen/4; i++)
   1833  1.37      onoe 		DPRINTFN(2, ("%s%08x", i?" ":"\n    ", pkt->fp_hdr[i]));
   1834  1.28       jmc 	DPRINTFN(2, ("$"));
   1835  1.28       jmc 	for (ndesc = 0, iov = pkt->fp_iov;
   1836  1.28       jmc 	     ndesc < pkt->fp_uio.uio_iovcnt; ndesc++, iov++) {
   1837  1.28       jmc 		for (i = 0; i < iov->iov_len; i++)
   1838  1.37      onoe 			DPRINTFN(2, ("%s%02x", (i%32)?((i%4)?"":" "):"\n    ",
   1839  1.28       jmc 			    ((u_int8_t *)iov->iov_base)[i]));
   1840  1.28       jmc 		DPRINTFN(2, ("$"));
   1841   1.3      onoe 	}
   1842  1.28       jmc 	DPRINTFN(1, ("\n"));
   1843   1.3      onoe #endif
   1844   1.3      onoe 
   1845   1.9      onoe 	if ((m = pkt->fp_m) != NULL) {
   1846   1.9      onoe 		for (ndesc = 2; m != NULL; m = m->m_next)
   1847   1.9      onoe 			ndesc++;
   1848   1.9      onoe 		if (ndesc > OHCI_DESC_MAX) {
   1849   1.9      onoe 			m0 = NULL;
   1850   1.9      onoe 			ndesc = 2;
   1851   1.9      onoe 			for (off = 0; off < pkt->fp_dlen; off += len) {
   1852   1.9      onoe 				if (m0 == NULL) {
   1853   1.9      onoe 					MGETHDR(m0, M_DONTWAIT, MT_DATA);
   1854   1.9      onoe 					if (m0 != NULL)
   1855   1.9      onoe 						M_COPY_PKTHDR(m0, pkt->fp_m);
   1856   1.9      onoe 					m = m0;
   1857   1.9      onoe 				} else {
   1858   1.9      onoe 					MGET(m->m_next, M_DONTWAIT, MT_DATA);
   1859   1.9      onoe 					m = m->m_next;
   1860   1.9      onoe 				}
   1861   1.9      onoe 				if (m != NULL)
   1862   1.9      onoe 					MCLGET(m, M_DONTWAIT);
   1863   1.9      onoe 				if (m == NULL || (m->m_flags & M_EXT) == 0) {
   1864   1.9      onoe 					m_freem(m0);
   1865   1.9      onoe 					return ENOMEM;
   1866   1.9      onoe 				}
   1867   1.9      onoe 				len = pkt->fp_dlen - off;
   1868   1.9      onoe 				if (len > m->m_ext.ext_size)
   1869   1.9      onoe 					len = m->m_ext.ext_size;
   1870   1.9      onoe 				m_copydata(pkt->fp_m, off, len,
   1871   1.9      onoe 				    mtod(m, caddr_t));
   1872  1.15      onoe 				m->m_len = len;
   1873   1.9      onoe 				ndesc++;
   1874   1.9      onoe 			}
   1875   1.9      onoe 			m_freem(pkt->fp_m);
   1876   1.9      onoe 			pkt->fp_m = m0;
   1877   1.9      onoe 		}
   1878   1.9      onoe 	} else
   1879   1.9      onoe 		ndesc = 2 + pkt->fp_uio.uio_iovcnt;
   1880   1.9      onoe 
   1881   1.9      onoe 	if (ndesc > OHCI_DESC_MAX)
   1882   1.3      onoe 		return ENOBUFS;
   1883   1.3      onoe 
   1884   1.9      onoe 	if (fc->fc_bufcnt > 50)			/*XXX*/
   1885   1.9      onoe 		return ENOBUFS;
   1886  1.24       jmc 	fb = malloc(sizeof(*fb), M_DEVBUF, M_WAITOK);
   1887  1.26     enami 	fb->fb_nseg = ndesc;
   1888   1.9      onoe 	fb->fb_desc = fwohci_desc_get(sc, ndesc);
   1889   1.9      onoe 	if (fb->fb_desc == NULL) {
   1890   1.9      onoe 		free(fb, M_DEVBUF);
   1891   1.3      onoe 		return ENOBUFS;
   1892   1.9      onoe 	}
   1893   1.9      onoe 	fb->fb_daddr = sc->sc_ddmamap->dm_segs[0].ds_addr +
   1894   1.9      onoe 	    ((caddr_t)fb->fb_desc - (caddr_t)sc->sc_desc);
   1895   1.9      onoe 	fb->fb_m = pkt->fp_m;
   1896   1.9      onoe 	fb->fb_callback = pkt->fp_callback;
   1897  1.29       jmc 	fb->fb_statuscb = pkt->fp_statuscb;
   1898  1.29       jmc 	fb->fb_statusarg = pkt->fp_statusarg;
   1899  1.29       jmc 
   1900   1.9      onoe 	if (ndesc > 2) {
   1901   1.9      onoe 		if ((error = bus_dmamap_create(sc->sc_dmat, pkt->fp_dlen, ndesc,
   1902  1.24       jmc 		    PAGE_SIZE, 0, BUS_DMA_WAITOK, &fb->fb_dmamap)) != 0) {
   1903   1.9      onoe 			fwohci_desc_put(sc, fb->fb_desc, ndesc);
   1904   1.9      onoe 			free(fb, M_DEVBUF);
   1905   1.9      onoe 			return error;
   1906   1.9      onoe 		}
   1907   1.9      onoe 
   1908   1.9      onoe 		if (pkt->fp_m != NULL)
   1909   1.9      onoe 			error = bus_dmamap_load_mbuf(sc->sc_dmat, fb->fb_dmamap,
   1910  1.24       jmc 			    pkt->fp_m, BUS_DMA_WAITOK);
   1911   1.9      onoe 		else
   1912   1.9      onoe 			error = bus_dmamap_load_uio(sc->sc_dmat, fb->fb_dmamap,
   1913  1.24       jmc 			    &pkt->fp_uio, BUS_DMA_WAITOK);
   1914   1.9      onoe 		if (error != 0) {
   1915   1.9      onoe 			bus_dmamap_destroy(sc->sc_dmat, fb->fb_dmamap);
   1916   1.9      onoe 			fwohci_desc_put(sc, fb->fb_desc, ndesc);
   1917   1.9      onoe 			free(fb, M_DEVBUF);
   1918   1.9      onoe 			return error;
   1919   1.3      onoe 		}
   1920   1.9      onoe 		bus_dmamap_sync(sc->sc_dmat, fb->fb_dmamap, 0, pkt->fp_dlen,
   1921   1.9      onoe 		    BUS_DMASYNC_PREWRITE);
   1922   1.3      onoe 	}
   1923   1.3      onoe 
   1924   1.3      onoe 	fd = fb->fb_desc;
   1925   1.3      onoe 	fd->fd_flags = OHCI_DESC_IMMED;
   1926   1.3      onoe 	fd->fd_reqcount = pkt->fp_hlen;
   1927   1.3      onoe 	fd->fd_data = 0;
   1928   1.3      onoe 	fd->fd_branch = 0;
   1929   1.3      onoe 	fd->fd_status = 0;
   1930   1.3      onoe 	if (fc->fc_ctx == OHCI_CTX_ASYNC_TX_RESPONSE) {
   1931   1.3      onoe 		i = 3;				/* XXX: 3 sec */
   1932   1.3      onoe 		val = OHCI_CSR_READ(sc, OHCI_REG_IsochronousCycleTimer);
   1933   1.3      onoe 		fd->fd_timestamp = ((val >> 12) & 0x1fff) |
   1934   1.3      onoe 		    ((((val >> 25) + i) & 0x7) << 13);
   1935   1.3      onoe 	} else
   1936   1.3      onoe 		fd->fd_timestamp = 0;
   1937   1.9      onoe 	memcpy(fd + 1, pkt->fp_hdr, pkt->fp_hlen);
   1938   1.9      onoe 	for (i = 0; i < ndesc - 2; i++) {
   1939   1.9      onoe 		fd = fb->fb_desc + 2 + i;
   1940   1.3      onoe 		fd->fd_flags = 0;
   1941   1.9      onoe 		fd->fd_reqcount = fb->fb_dmamap->dm_segs[i].ds_len;
   1942   1.9      onoe 		fd->fd_data = fb->fb_dmamap->dm_segs[i].ds_addr;
   1943   1.3      onoe 		fd->fd_branch = 0;
   1944   1.3      onoe 		fd->fd_status = 0;
   1945   1.3      onoe 		fd->fd_timestamp = 0;
   1946   1.3      onoe 	}
   1947   1.3      onoe 	fd->fd_flags |= OHCI_DESC_LAST | OHCI_DESC_BRANCH;
   1948   1.3      onoe 	fd->fd_flags |= OHCI_DESC_INTR_ALWAYS;
   1949   1.3      onoe 
   1950   1.3      onoe #ifdef FW_DEBUG
   1951  1.28       jmc 	DPRINTFN(1, ("fwohci_at_output: desc %ld",
   1952  1.28       jmc 	    (long)(fb->fb_desc - sc->sc_desc)));
   1953  1.28       jmc 	for (i = 0; i < ndesc * 4; i++)
   1954  1.37      onoe 		DPRINTFN(2, ("%s%08x", i&7?" ":"\n    ",
   1955  1.28       jmc 		    ((u_int32_t *)fb->fb_desc)[i]));
   1956  1.28       jmc 	DPRINTFN(1, ("\n"));
   1957   1.3      onoe #endif
   1958   1.3      onoe 
   1959   1.3      onoe 	val = OHCI_ASYNC_DMA_READ(sc, fc->fc_ctx,
   1960   1.3      onoe 	    OHCI_SUBREG_ContextControlClear);
   1961   1.3      onoe 
   1962   1.3      onoe 	if (val & OHCI_CTXCTL_RUN) {
   1963   1.3      onoe 		if (fc->fc_branch == NULL) {
   1964   1.3      onoe 			OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   1965   1.3      onoe 			    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   1966   1.3      onoe 			goto run;
   1967   1.3      onoe 		}
   1968   1.3      onoe 		*fc->fc_branch = fb->fb_daddr | ndesc;
   1969   1.9      onoe 		OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   1970   1.9      onoe 		    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_WAKE);
   1971   1.3      onoe 	} else {
   1972   1.3      onoe   run:
   1973   1.3      onoe 		OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   1974   1.3      onoe 		    OHCI_SUBREG_CommandPtr, fb->fb_daddr | ndesc);
   1975   1.3      onoe 		OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   1976   1.3      onoe 		    OHCI_SUBREG_ContextControlSet, OHCI_CTXCTL_RUN);
   1977   1.3      onoe 	}
   1978   1.3      onoe 	fc->fc_branch = &fd->fd_branch;
   1979   1.3      onoe 
   1980   1.9      onoe 	fc->fc_bufcnt++;
   1981   1.9      onoe 	TAILQ_INSERT_TAIL(&fc->fc_buf, fb, fb_list);
   1982  1.15      onoe 	pkt->fp_m = NULL;
   1983   1.3      onoe 	return 0;
   1984   1.3      onoe }
   1985   1.3      onoe 
   1986   1.3      onoe static void
   1987   1.9      onoe fwohci_at_done(struct fwohci_softc *sc, struct fwohci_ctx *fc, int force)
   1988   1.3      onoe {
   1989   1.9      onoe 	struct fwohci_buf *fb;
   1990   1.9      onoe 	struct fwohci_desc *fd;
   1991  1.29       jmc 	struct fwohci_pkt pkt;
   1992   1.9      onoe 	int i;
   1993   1.3      onoe 
   1994   1.9      onoe 	while ((fb = TAILQ_FIRST(&fc->fc_buf)) != NULL) {
   1995   1.9      onoe 		fd = fb->fb_desc;
   1996   1.3      onoe #ifdef FW_DEBUG
   1997  1.28       jmc 		DPRINTFN(1, ("fwohci_at_done: %sdesc %ld (%d)",
   1998  1.28       jmc 		    force ? "force " : "", (long)(fd - sc->sc_desc),
   1999  1.28       jmc 		    fb->fb_nseg));
   2000  1.28       jmc 		for (i = 0; i < fb->fb_nseg * 4; i++)
   2001  1.37      onoe 			DPRINTFN(2, ("%s%08x", i&7?" ":"\n    ",
   2002  1.28       jmc 			    ((u_int32_t *)fd)[i]));
   2003  1.28       jmc 		DPRINTFN(1, ("\n"));
   2004   1.3      onoe #endif
   2005   1.9      onoe 		if (fb->fb_nseg > 2)
   2006   1.9      onoe 			fd += fb->fb_nseg - 1;
   2007   1.9      onoe 		if (!force && !(fd->fd_status & OHCI_CTXCTL_ACTIVE))
   2008   1.3      onoe 			break;
   2009   1.9      onoe 		TAILQ_REMOVE(&fc->fc_buf, fb, fb_list);
   2010   1.9      onoe 		if (fc->fc_branch == &fd->fd_branch) {
   2011   1.9      onoe 			OHCI_ASYNC_DMA_WRITE(sc, fc->fc_ctx,
   2012   1.9      onoe 			    OHCI_SUBREG_ContextControlClear, OHCI_CTXCTL_RUN);
   2013   1.9      onoe 			fc->fc_branch = NULL;
   2014   1.9      onoe 			for (i = 0; i < OHCI_LOOP; i++) {
   2015   1.9      onoe 				if (!(OHCI_ASYNC_DMA_READ(sc, fc->fc_ctx,
   2016   1.9      onoe 				    OHCI_SUBREG_ContextControlClear) &
   2017   1.9      onoe 				    OHCI_CTXCTL_ACTIVE))
   2018   1.9      onoe 					break;
   2019  1.36      onoe 				DELAY(10);
   2020   1.9      onoe 			}
   2021   1.3      onoe 		}
   2022  1.29       jmc 
   2023  1.29       jmc 		if (fb->fb_statuscb) {
   2024  1.29       jmc 			memset(&pkt, 0, sizeof(pkt));
   2025  1.29       jmc 			pkt.fp_status = fd->fd_status;
   2026  1.29       jmc 			memcpy(pkt.fp_hdr, fd + 1, sizeof(pkt.fp_hdr[0]));
   2027  1.29       jmc 
   2028  1.29       jmc 			/* Indicate this is just returning the status bits. */
   2029  1.29       jmc 			pkt.fp_tcode = -1;
   2030  1.29       jmc 			(*fb->fb_statuscb)(sc, fb->fb_statusarg, &pkt);
   2031  1.29       jmc 			fb->fb_statuscb = NULL;
   2032  1.29       jmc 			fb->fb_statusarg = NULL;
   2033  1.29       jmc 		}
   2034   1.9      onoe 		fwohci_desc_put(sc, fb->fb_desc, fb->fb_nseg);
   2035   1.9      onoe 		if (fb->fb_nseg > 2)
   2036   1.9      onoe 			bus_dmamap_destroy(sc->sc_dmat, fb->fb_dmamap);
   2037   1.9      onoe 		fc->fc_bufcnt--;
   2038  1.29       jmc 		if (fb->fb_callback) {
   2039   1.9      onoe 			(*fb->fb_callback)(sc->sc_sc1394.sc1394_if, fb->fb_m);
   2040   1.9      onoe 			fb->fb_callback = NULL;
   2041   1.9      onoe 		} else if (fb->fb_m != NULL)
   2042   1.9      onoe 			m_freem(fb->fb_m);
   2043   1.9      onoe 		free(fb, M_DEVBUF);
   2044   1.3      onoe 	}
   2045   1.3      onoe }
   2046   1.3      onoe 
   2047   1.3      onoe /*
   2048   1.3      onoe  * Asynchronous Transmit Reponse -- in response of request packet.
   2049   1.3      onoe  */
   2050   1.3      onoe static void
   2051   1.3      onoe fwohci_atrs_output(struct fwohci_softc *sc, int rcode, struct fwohci_pkt *req,
   2052   1.3      onoe     struct fwohci_pkt *res)
   2053   1.3      onoe {
   2054   1.3      onoe 
   2055  1.26     enami 	if (((*req->fp_trail & 0x001f0000) >> 16) !=
   2056  1.26     enami 	    OHCI_CTXCTL_EVENT_ACK_PENDING)
   2057  1.26     enami 		return;
   2058  1.26     enami 
   2059   1.3      onoe 	res->fp_hdr[0] = (req->fp_hdr[0] & 0x0000fc00) | 0x00000100;
   2060   1.3      onoe 	res->fp_hdr[1] = (req->fp_hdr[1] & 0xffff0000) | (rcode << 12);
   2061   1.3      onoe 	switch (req->fp_tcode) {
   2062   1.3      onoe 	case IEEE1394_TCODE_WRITE_REQ_QUAD:
   2063   1.3      onoe 	case IEEE1394_TCODE_WRITE_REQ_BLOCK:
   2064   1.3      onoe 		res->fp_tcode = IEEE1394_TCODE_WRITE_RESP;
   2065   1.3      onoe 		res->fp_hlen = 12;
   2066   1.3      onoe 		break;
   2067   1.3      onoe 	case IEEE1394_TCODE_READ_REQ_QUAD:
   2068   1.3      onoe 		res->fp_tcode = IEEE1394_TCODE_READ_RESP_QUAD;
   2069   1.3      onoe 		res->fp_hlen = 16;
   2070   1.3      onoe 		res->fp_dlen = 0;
   2071   1.9      onoe 		if (res->fp_uio.uio_iovcnt == 1 && res->fp_iov[0].iov_len == 4)
   2072   1.3      onoe 			res->fp_hdr[3] =
   2073   1.3      onoe 			    *(u_int32_t *)res->fp_iov[0].iov_base;
   2074   1.9      onoe 		res->fp_uio.uio_iovcnt = 0;
   2075   1.3      onoe 		break;
   2076   1.3      onoe 	case IEEE1394_TCODE_READ_REQ_BLOCK:
   2077   1.3      onoe 	case IEEE1394_TCODE_LOCK_REQ:
   2078   1.3      onoe 		if (req->fp_tcode == IEEE1394_TCODE_LOCK_REQ)
   2079   1.3      onoe 			res->fp_tcode = IEEE1394_TCODE_LOCK_RESP;
   2080   1.3      onoe 		else
   2081   1.3      onoe 			res->fp_tcode = IEEE1394_TCODE_READ_RESP_BLOCK;
   2082   1.3      onoe 		res->fp_hlen = 16;
   2083   1.9      onoe 		res->fp_dlen = res->fp_uio.uio_resid;
   2084   1.3      onoe 		res->fp_hdr[3] = res->fp_dlen << 16;
   2085   1.3      onoe 		break;
   2086   1.3      onoe 	}
   2087   1.3      onoe 	res->fp_hdr[0] |= (res->fp_tcode << 4);
   2088  1.26     enami 	fwohci_at_output(sc, sc->sc_ctx_atrs, res);
   2089   1.3      onoe }
   2090   1.3      onoe 
   2091   1.3      onoe /*
   2092   1.3      onoe  * APPLICATION LAYER SERVICES
   2093   1.3      onoe  */
   2094  1.16      onoe 
   2095  1.16      onoe /*
   2096  1.16      onoe  * Retrieve Global UID from GUID ROM
   2097  1.16      onoe  */
   2098  1.16      onoe static int
   2099  1.16      onoe fwohci_guidrom_init(struct fwohci_softc *sc)
   2100  1.16      onoe {
   2101  1.16      onoe 	int i, n, off;
   2102  1.16      onoe 	u_int32_t val1, val2;
   2103  1.16      onoe 
   2104  1.16      onoe 	/* Extract the Global UID
   2105  1.16      onoe 	 */
   2106  1.16      onoe 	val1 = OHCI_CSR_READ(sc, OHCI_REG_GUIDHi);
   2107  1.16      onoe 	val2 = OHCI_CSR_READ(sc, OHCI_REG_GUIDLo);
   2108  1.26     enami 
   2109  1.16      onoe 	if (val1 != 0 || val2 != 0) {
   2110  1.16      onoe 		sc->sc_sc1394.sc1394_guid[0] = (val1 >> 24) & 0xff;
   2111  1.16      onoe 		sc->sc_sc1394.sc1394_guid[1] = (val1 >> 16) & 0xff;
   2112  1.16      onoe 		sc->sc_sc1394.sc1394_guid[2] = (val1 >>  8) & 0xff;
   2113  1.16      onoe 		sc->sc_sc1394.sc1394_guid[3] = (val1 >>  0) & 0xff;
   2114  1.16      onoe 		sc->sc_sc1394.sc1394_guid[4] = (val2 >> 24) & 0xff;
   2115  1.16      onoe 		sc->sc_sc1394.sc1394_guid[5] = (val2 >> 16) & 0xff;
   2116  1.16      onoe 		sc->sc_sc1394.sc1394_guid[6] = (val2 >>  8) & 0xff;
   2117  1.16      onoe 		sc->sc_sc1394.sc1394_guid[7] = (val2 >>  0) & 0xff;
   2118  1.16      onoe 	} else {
   2119  1.16      onoe 		val1 = OHCI_CSR_READ(sc, OHCI_REG_Version);
   2120  1.16      onoe 		if ((val1 & OHCI_Version_GUID_ROM) == 0)
   2121  1.16      onoe 			return -1;
   2122  1.16      onoe 		OHCI_CSR_WRITE(sc, OHCI_REG_Guid_Rom, OHCI_Guid_AddrReset);
   2123  1.16      onoe 		for (i = 0; i < OHCI_LOOP; i++) {
   2124  1.16      onoe 			val1 = OHCI_CSR_READ(sc, OHCI_REG_Guid_Rom);
   2125  1.16      onoe 			if (!(val1 & OHCI_Guid_AddrReset))
   2126  1.16      onoe 				break;
   2127  1.36      onoe 			DELAY(10);
   2128  1.16      onoe 		}
   2129  1.18      onoe 		off = OHCI_BITVAL(val1, OHCI_Guid_MiniROM) + 4;
   2130  1.16      onoe 		val2 = 0;
   2131  1.16      onoe 		for (n = 0; n < off + sizeof(sc->sc_sc1394.sc1394_guid); n++) {
   2132  1.16      onoe 			OHCI_CSR_WRITE(sc, OHCI_REG_Guid_Rom,
   2133  1.16      onoe 			    OHCI_Guid_RdStart);
   2134  1.16      onoe 			for (i = 0; i < OHCI_LOOP; i++) {
   2135  1.16      onoe 				val1 = OHCI_CSR_READ(sc, OHCI_REG_Guid_Rom);
   2136  1.16      onoe 				if (!(val1 & OHCI_Guid_RdStart))
   2137  1.16      onoe 					break;
   2138  1.36      onoe 				DELAY(10);
   2139  1.16      onoe 			}
   2140  1.16      onoe 			if (n < off)
   2141  1.16      onoe 				continue;
   2142  1.18      onoe 			val1 = OHCI_BITVAL(val1, OHCI_Guid_RdData);
   2143  1.16      onoe 			sc->sc_sc1394.sc1394_guid[n - off] = val1;
   2144  1.16      onoe 			val2 |= val1;
   2145  1.16      onoe 		}
   2146  1.16      onoe 		if (val2 == 0)
   2147  1.16      onoe 			return -1;
   2148  1.16      onoe 	}
   2149  1.16      onoe 	return 0;
   2150  1.16      onoe }
   2151   1.3      onoe 
   2152   1.3      onoe /*
   2153   1.3      onoe  * Initialization for Configuration ROM (no DMA context)
   2154   1.3      onoe  */
   2155   1.3      onoe 
   2156   1.3      onoe #define	CFR_MAXUNIT		20
   2157   1.3      onoe 
   2158   1.3      onoe struct configromctx {
   2159   1.3      onoe 	u_int32_t	*ptr;
   2160   1.3      onoe 	int		curunit;
   2161   1.3      onoe 	struct {
   2162   1.3      onoe 		u_int32_t	*start;
   2163   1.3      onoe 		int		length;
   2164   1.3      onoe 		u_int32_t	*refer;
   2165   1.3      onoe 		int		refunit;
   2166   1.3      onoe 	} unit[CFR_MAXUNIT];
   2167   1.3      onoe };
   2168   1.3      onoe 
   2169   1.3      onoe #define	CFR_PUT_DATA4(cfr, d1, d2, d3, d4)				\
   2170   1.3      onoe 	(*(cfr)->ptr++ = (((d1)<<24) | ((d2)<<16) | ((d3)<<8) | (d4)))
   2171   1.3      onoe 
   2172   1.3      onoe #define	CFR_PUT_DATA1(cfr, d)	(*(cfr)->ptr++ = (d))
   2173   1.3      onoe 
   2174   1.3      onoe #define	CFR_PUT_VALUE(cfr, key, d)	(*(cfr)->ptr++ = ((key)<<24) | (d))
   2175   1.3      onoe 
   2176   1.3      onoe #define	CFR_PUT_CRC(cfr, n)						\
   2177   1.3      onoe 	(*(cfr)->unit[n].start = ((cfr)->unit[n].length << 16) |	\
   2178   1.3      onoe 	    fwohci_crc16((cfr)->unit[n].start + 1, (cfr)->unit[n].length))
   2179   1.3      onoe 
   2180   1.3      onoe #define	CFR_START_UNIT(cfr, n)						\
   2181   1.3      onoe do {									\
   2182   1.3      onoe 	if ((cfr)->unit[n].refer != NULL) {				\
   2183   1.3      onoe 		*(cfr)->unit[n].refer |=				\
   2184   1.3      onoe 		    (cfr)->ptr - (cfr)->unit[n].refer;			\
   2185   1.3      onoe 		CFR_PUT_CRC(cfr, (cfr)->unit[n].refunit);		\
   2186   1.3      onoe 	}								\
   2187   1.3      onoe 	(cfr)->curunit = (n);						\
   2188   1.3      onoe 	(cfr)->unit[n].start = (cfr)->ptr++;				\
   2189   1.3      onoe } while (0 /* CONSTCOND */)
   2190   1.3      onoe 
   2191   1.3      onoe #define	CFR_PUT_REFER(cfr, key, n)					\
   2192   1.3      onoe do {									\
   2193   1.3      onoe 	(cfr)->unit[n].refer = (cfr)->ptr;				\
   2194   1.3      onoe 	(cfr)->unit[n].refunit = (cfr)->curunit;			\
   2195   1.3      onoe 	*(cfr)->ptr++ = (key) << 24;					\
   2196   1.3      onoe } while (0 /* CONSTCOND */)
   2197   1.3      onoe 
   2198   1.3      onoe #define	CFR_END_UNIT(cfr)						\
   2199   1.3      onoe do {									\
   2200   1.3      onoe 	(cfr)->unit[(cfr)->curunit].length = (cfr)->ptr -		\
   2201   1.3      onoe 	    ((cfr)->unit[(cfr)->curunit].start + 1);			\
   2202   1.3      onoe 	CFR_PUT_CRC(cfr, (cfr)->curunit);				\
   2203   1.3      onoe } while (0 /* CONSTCOND */)
   2204   1.3      onoe 
   2205   1.3      onoe static u_int16_t
   2206   1.3      onoe fwohci_crc16(u_int32_t *ptr, int len)
   2207   1.3      onoe {
   2208   1.3      onoe 	int shift;
   2209   1.3      onoe 	u_int32_t crc, sum, data;
   2210   1.3      onoe 
   2211   1.3      onoe 	crc = 0;
   2212   1.3      onoe 	while (len-- > 0) {
   2213   1.3      onoe 		data = *ptr++;
   2214   1.3      onoe 		for (shift = 28; shift >= 0; shift -= 4) {
   2215   1.3      onoe 			sum = ((crc >> 12) ^ (data >> shift)) & 0x000f;
   2216   1.3      onoe 			crc = (crc << 4) ^ (sum << 12) ^ (sum << 5) ^ sum;
   2217   1.3      onoe 		}
   2218   1.3      onoe 		crc &= 0xffff;
   2219   1.3      onoe 	}
   2220   1.3      onoe 	return crc;
   2221   1.3      onoe }
   2222   1.3      onoe 
   2223   1.3      onoe static void
   2224   1.3      onoe fwohci_configrom_init(struct fwohci_softc *sc)
   2225   1.3      onoe {
   2226  1.29       jmc 	int i, val;
   2227   1.3      onoe 	struct fwohci_buf *fb;
   2228   1.3      onoe 	u_int32_t *hdr;
   2229   1.3      onoe 	struct configromctx cfr;
   2230   1.3      onoe 
   2231   1.3      onoe 	fb = &sc->sc_buf_cnfrom;
   2232   1.3      onoe 	memset(&cfr, 0, sizeof(cfr));
   2233   1.3      onoe 	cfr.ptr = hdr = (u_int32_t *)fb->fb_buf;
   2234   1.3      onoe 
   2235   1.3      onoe 	/* headers */
   2236   1.3      onoe 	CFR_START_UNIT(&cfr, 0);
   2237   1.3      onoe 	CFR_PUT_DATA1(&cfr, OHCI_CSR_READ(sc, OHCI_REG_BusId));
   2238   1.3      onoe 	CFR_PUT_DATA1(&cfr, OHCI_CSR_READ(sc, OHCI_REG_BusOptions));
   2239   1.3      onoe 	CFR_PUT_DATA1(&cfr, OHCI_CSR_READ(sc, OHCI_REG_GUIDHi));
   2240   1.3      onoe 	CFR_PUT_DATA1(&cfr, OHCI_CSR_READ(sc, OHCI_REG_GUIDLo));
   2241   1.3      onoe 	CFR_END_UNIT(&cfr);
   2242   1.3      onoe 	/* copy info_length from crc_length */
   2243   1.3      onoe 	*hdr |= (*hdr & 0x00ff0000) << 8;
   2244   1.3      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_ConfigROMhdr, *hdr);
   2245   1.3      onoe 
   2246   1.3      onoe 	/* root directory */
   2247   1.3      onoe 	CFR_START_UNIT(&cfr, 1);
   2248   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0x03, 0x00005e);	/* vendor id */
   2249   1.3      onoe 	CFR_PUT_REFER(&cfr, 0x81, 2);		/* textual descriptor offset */
   2250   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0x0c, 0x0083c0);	/* node capability */
   2251   1.3      onoe 						/* spt,64,fix,lst,drq */
   2252   1.3      onoe #ifdef INET
   2253   1.3      onoe 	CFR_PUT_REFER(&cfr, 0xd1, 3);		/* IPv4 unit directory */
   2254   1.3      onoe #endif /* INET */
   2255   1.3      onoe #ifdef INET6
   2256   1.3      onoe 	CFR_PUT_REFER(&cfr, 0xd1, 4);		/* IPv6 unit directory */
   2257   1.3      onoe #endif /* INET6 */
   2258   1.3      onoe 	CFR_END_UNIT(&cfr);
   2259   1.3      onoe 
   2260   1.3      onoe 	CFR_START_UNIT(&cfr, 2);
   2261   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0, 0);		/* textual descriptor */
   2262   1.3      onoe 	CFR_PUT_DATA1(&cfr, 0);			/* minimal ASCII */
   2263   1.3      onoe 	CFR_PUT_DATA4(&cfr, 'N', 'e', 't', 'B');
   2264   1.3      onoe 	CFR_PUT_DATA4(&cfr, 'S', 'D', 0x00, 0x00);
   2265   1.3      onoe 	CFR_END_UNIT(&cfr);
   2266   1.3      onoe 
   2267   1.3      onoe #ifdef INET
   2268   1.3      onoe 	/* IPv4 unit directory */
   2269   1.3      onoe 	CFR_START_UNIT(&cfr, 3);
   2270   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0x12, 0x00005e);	/* unit spec id */
   2271   1.3      onoe 	CFR_PUT_REFER(&cfr, 0x81, 6);		/* textual descriptor offset */
   2272   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0x13, 0x000001);	/* unit sw version */
   2273   1.3      onoe 	CFR_PUT_REFER(&cfr, 0x81, 7);		/* textual descriptor offset */
   2274   1.3      onoe 	CFR_END_UNIT(&cfr);
   2275   1.3      onoe 
   2276   1.3      onoe 	CFR_START_UNIT(&cfr, 6);
   2277   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0, 0);		/* textual descriptor */
   2278   1.3      onoe 	CFR_PUT_DATA1(&cfr, 0);			/* minimal ASCII */
   2279   1.3      onoe 	CFR_PUT_DATA4(&cfr, 'I', 'A', 'N', 'A');
   2280   1.3      onoe 	CFR_END_UNIT(&cfr);
   2281   1.3      onoe 
   2282   1.3      onoe 	CFR_START_UNIT(&cfr, 7);
   2283   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0, 0);		/* textual descriptor */
   2284   1.3      onoe 	CFR_PUT_DATA1(&cfr, 0);			/* minimal ASCII */
   2285   1.3      onoe 	CFR_PUT_DATA4(&cfr, 'I', 'P', 'v', '4');
   2286   1.3      onoe 	CFR_END_UNIT(&cfr);
   2287   1.3      onoe #endif /* INET */
   2288   1.3      onoe 
   2289   1.3      onoe #ifdef INET6
   2290   1.3      onoe 	/* IPv6 unit directory */
   2291   1.3      onoe 	CFR_START_UNIT(&cfr, 4);
   2292   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0x12, 0x00005e);	/* unit spec id */
   2293   1.3      onoe 	CFR_PUT_REFER(&cfr, 0x81, 8);		/* textual descriptor offset */
   2294   1.8      onoe 	CFR_PUT_VALUE(&cfr, 0x13, 0x000002);	/* unit sw version */
   2295   1.8      onoe 						/* XXX: TBA by IANA */
   2296   1.3      onoe 	CFR_PUT_REFER(&cfr, 0x81, 9);		/* textual descriptor offset */
   2297   1.3      onoe 	CFR_END_UNIT(&cfr);
   2298   1.3      onoe 
   2299   1.3      onoe 	CFR_START_UNIT(&cfr, 8);
   2300   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0, 0);		/* textual descriptor */
   2301   1.3      onoe 	CFR_PUT_DATA1(&cfr, 0);			/* minimal ASCII */
   2302   1.3      onoe 	CFR_PUT_DATA4(&cfr, 'I', 'A', 'N', 'A');
   2303   1.3      onoe 	CFR_END_UNIT(&cfr);
   2304   1.3      onoe 
   2305   1.3      onoe 	CFR_START_UNIT(&cfr, 9);
   2306   1.3      onoe 	CFR_PUT_VALUE(&cfr, 0, 0);		/* textual descriptor */
   2307   1.3      onoe 	CFR_PUT_DATA1(&cfr, 0);
   2308   1.3      onoe 	CFR_PUT_DATA4(&cfr, 'I', 'P', 'v', '6');
   2309   1.3      onoe 	CFR_END_UNIT(&cfr);
   2310   1.3      onoe #endif /* INET6 */
   2311   1.3      onoe 
   2312  1.24       jmc 	fb->fb_off = cfr.ptr - hdr;
   2313   1.3      onoe #ifdef FW_DEBUG
   2314  1.28       jmc 	DPRINTFN(2, ("%s: Config ROM:", sc->sc_sc1394.sc1394_dev.dv_xname));
   2315  1.28       jmc 	for (i = 0; i < fb->fb_off; i++)
   2316  1.28       jmc 		DPRINTFN(2, ("%s%08x", i&7?" ":"\n    ", hdr[i]));
   2317  1.28       jmc 	DPRINTFN(2, ("\n"));
   2318   1.3      onoe #endif /* FW_DEBUG */
   2319   1.3      onoe 
   2320   1.3      onoe 	/*
   2321   1.3      onoe 	 * Make network byte order for DMA
   2322   1.3      onoe 	 */
   2323  1.24       jmc 	for (i = 0; i < fb->fb_off; i++)
   2324   1.8      onoe 		HTONL(hdr[i]);
   2325  1.26     enami 	bus_dmamap_sync(sc->sc_dmat, fb->fb_dmamap, 0,
   2326   1.3      onoe 	    (caddr_t)cfr.ptr - fb->fb_buf, BUS_DMASYNC_PREWRITE);
   2327   1.3      onoe 
   2328   1.3      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_ConfigROMmap,
   2329   1.3      onoe 	    fb->fb_dmamap->dm_segs[0].ds_addr);
   2330  1.24       jmc 
   2331  1.29       jmc 	/* This register is only valid on OHCI 1.1. */
   2332  1.29       jmc 	val = OHCI_CSR_READ(sc, OHCI_REG_Version);
   2333  1.29       jmc 	if ((OHCI_Version_GET_Version(val) == 1) &&
   2334  1.29       jmc 	    (OHCI_Version_GET_Revision(val) == 1))
   2335  1.29       jmc 		OHCI_CSR_WRITE(sc, OHCI_REG_HCControlSet,
   2336  1.29       jmc 		    OHCI_HCControl_BIBImageValid);
   2337  1.29       jmc 
   2338  1.24       jmc 	/* Just allow quad reads of the rom. */
   2339  1.26     enami 	for (i = 0; i < fb->fb_off; i++)
   2340  1.26     enami 		fwohci_handler_set(sc, IEEE1394_TCODE_READ_REQ_QUAD,
   2341  1.24       jmc 		    CSR_BASE_HI, CSR_BASE_LO + CSR_CONFIG_ROM + (i * 4),
   2342  1.26     enami 		    fwohci_configrom_input, NULL);
   2343  1.24       jmc }
   2344  1.24       jmc 
   2345  1.24       jmc static int
   2346  1.24       jmc fwohci_configrom_input(struct fwohci_softc *sc, void *arg,
   2347  1.24       jmc     struct fwohci_pkt *pkt)
   2348  1.24       jmc {
   2349  1.24       jmc 	struct fwohci_pkt res;
   2350  1.24       jmc 	u_int32_t loc, *rom;
   2351  1.26     enami 
   2352  1.24       jmc 	/* This will be used as an array index so size accordingly. */
   2353  1.26     enami 	loc = pkt->fp_hdr[2] - (CSR_BASE_LO + CSR_CONFIG_ROM);
   2354  1.26     enami 	if ((loc & 0x03) != 0) {
   2355  1.24       jmc 		/* alignment error */
   2356  1.24       jmc 		return IEEE1394_RCODE_ADDRESS_ERROR;
   2357  1.24       jmc 	}
   2358  1.26     enami 	else
   2359  1.26     enami 		loc /= 4;
   2360  1.26     enami 	rom = (u_int32_t *)sc->sc_buf_cnfrom.fb_buf;
   2361  1.26     enami 
   2362  1.28       jmc 	DPRINTFN(1, ("fwohci_configrom_input: ConfigRom[0x%04x]: 0x%08x\n", loc,
   2363  1.28       jmc 	    ntohl(rom[loc])));
   2364  1.26     enami 
   2365  1.26     enami 	memset(&res, 0, sizeof(res));
   2366  1.26     enami 	res.fp_hdr[3] = rom[loc];
   2367  1.26     enami 	fwohci_atrs_output(sc, IEEE1394_RCODE_COMPLETE, pkt, &res);
   2368  1.26     enami 	return -1;
   2369   1.3      onoe }
   2370   1.3      onoe 
   2371   1.3      onoe /*
   2372   1.3      onoe  * SelfID buffer (no DMA context)
   2373   1.3      onoe  */
   2374   1.3      onoe static void
   2375   1.3      onoe fwohci_selfid_init(struct fwohci_softc *sc)
   2376   1.3      onoe {
   2377   1.3      onoe 	struct fwohci_buf *fb;
   2378   1.3      onoe 
   2379   1.3      onoe 	fb = &sc->sc_buf_selfid;
   2380  1.28       jmc #ifdef DIAGNOSTIC
   2381   1.7      onoe 	if ((fb->fb_dmamap->dm_segs[0].ds_addr & 0x7ff) != 0)
   2382  1.51       jmc 		panic("fwohci_selfid_init: not aligned: %ld (%ld) %p",
   2383  1.51       jmc 		    (unsigned long)fb->fb_dmamap->dm_segs[0].ds_addr,
   2384  1.28       jmc 		    (unsigned long)fb->fb_dmamap->dm_segs[0].ds_len, fb->fb_buf);
   2385   1.7      onoe #endif
   2386   1.9      onoe 	memset(fb->fb_buf, 0, fb->fb_dmamap->dm_segs[0].ds_len);
   2387   1.7      onoe 	bus_dmamap_sync(sc->sc_dmat, fb->fb_dmamap, 0,
   2388   1.7      onoe 	    fb->fb_dmamap->dm_segs[0].ds_len, BUS_DMASYNC_PREREAD);
   2389   1.3      onoe 
   2390   1.3      onoe 	OHCI_CSR_WRITE(sc, OHCI_REG_SelfIDBuffer,
   2391   1.3      onoe 	    fb->fb_dmamap->dm_segs[0].ds_addr);
   2392   1.3      onoe }
   2393   1.3      onoe 
   2394   1.7      onoe static int
   2395   1.3      onoe fwohci_selfid_input(struct fwohci_softc *sc)
   2396   1.3      onoe {
   2397   1.3      onoe 	int i;
   2398   1.7      onoe 	u_int32_t count, val, gen;
   2399   1.3      onoe 	u_int32_t *buf;
   2400   1.3      onoe 
   2401  1.20      onoe 	buf = (u_int32_t *)sc->sc_buf_selfid.fb_buf;
   2402   1.3      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_SelfIDCount);
   2403  1.20      onoe   again:
   2404   1.3      onoe 	if (val & OHCI_SelfID_Error) {
   2405   1.3      onoe 		printf("%s: SelfID Error\n", sc->sc_sc1394.sc1394_dev.dv_xname);
   2406   1.7      onoe 		return -1;
   2407   1.3      onoe 	}
   2408  1.18      onoe 	count = OHCI_BITVAL(val, OHCI_SelfID_Size);
   2409   1.3      onoe 
   2410   1.3      onoe 	bus_dmamap_sync(sc->sc_dmat, sc->sc_buf_selfid.fb_dmamap,
   2411   1.3      onoe 	    0, count << 2, BUS_DMASYNC_POSTREAD);
   2412  1.20      onoe 	gen = OHCI_BITVAL(buf[0], OHCI_SelfID_Gen);
   2413   1.3      onoe 
   2414   1.3      onoe #ifdef FW_DEBUG
   2415  1.28       jmc 	DPRINTFN(1, ("%s: SelfID: 0x%08x", sc->sc_sc1394.sc1394_dev.dv_xname,
   2416  1.28       jmc 	    val));
   2417  1.28       jmc 	for (i = 0; i < count; i++)
   2418  1.37      onoe 		DPRINTFN(2, ("%s%08x", i&7?" ":"\n    ", buf[i]));
   2419  1.28       jmc 	DPRINTFN(1, ("\n"));
   2420   1.3      onoe #endif /* FW_DEBUG */
   2421   1.3      onoe 
   2422  1.20      onoe 	for (i = 1; i < count; i += 2) {
   2423  1.20      onoe 		if (buf[i] != ~buf[i + 1])
   2424  1.20      onoe 			break;
   2425  1.20      onoe 		if (buf[i] & 0x00000001)
   2426  1.20      onoe 			continue;	/* more pkt */
   2427  1.20      onoe 		if (buf[i] & 0x00800000)
   2428  1.20      onoe 			continue;	/* external id */
   2429  1.20      onoe 		sc->sc_rootid = (buf[i] & 0x3f000000) >> 24;
   2430  1.20      onoe 		if ((buf[i] & 0x00400800) == 0x00400800)
   2431  1.20      onoe 			sc->sc_irmid = sc->sc_rootid;
   2432  1.20      onoe 	}
   2433  1.20      onoe 
   2434  1.20      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_SelfIDCount);
   2435  1.20      onoe 	if (OHCI_BITVAL(val, OHCI_SelfID_Gen) != gen) {
   2436  1.20      onoe 		if (OHCI_BITVAL(val, OHCI_SelfID_Gen) !=
   2437  1.20      onoe 		    OHCI_BITVAL(buf[0], OHCI_SelfID_Gen))
   2438  1.20      onoe 			goto again;
   2439  1.28       jmc 		DPRINTF(("%s: SelfID Gen mismatch (%d, %d)\n",
   2440  1.28       jmc 		    sc->sc_sc1394.sc1394_dev.dv_xname, gen,
   2441  1.28       jmc 		    OHCI_BITVAL(val, OHCI_SelfID_Gen)));
   2442  1.20      onoe 		return -1;
   2443  1.20      onoe 	}
   2444  1.20      onoe 	if (i != count) {
   2445  1.20      onoe 		printf("%s: SelfID corrupted (%d, 0x%08x, 0x%08x)\n",
   2446  1.20      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname, i, buf[i], buf[i + 1]);
   2447  1.20      onoe #if 1
   2448  1.20      onoe 		if (i == 1 && buf[i] == 0 && buf[i + 1] == 0) {
   2449  1.20      onoe 			/*
   2450  1.20      onoe 			 * XXX: CXD3222 sometimes fails to DMA
   2451  1.20      onoe 			 * selfid packet??
   2452  1.20      onoe 			 */
   2453  1.20      onoe 			sc->sc_rootid = (count - 1) / 2 - 1;
   2454  1.20      onoe 			sc->sc_irmid = sc->sc_rootid;
   2455  1.20      onoe 		} else
   2456  1.20      onoe #endif
   2457  1.20      onoe 		return -1;
   2458  1.20      onoe 	}
   2459  1.20      onoe 
   2460   1.7      onoe 	val = OHCI_CSR_READ(sc, OHCI_REG_NodeId);
   2461   1.7      onoe 	if ((val & OHCI_NodeId_IDValid) == 0) {
   2462   1.9      onoe 		sc->sc_nodeid = 0xffff;		/* invalid */
   2463   1.7      onoe 		printf("%s: nodeid is invalid\n",
   2464   1.7      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname);
   2465   1.7      onoe 		return -1;
   2466   1.7      onoe 	}
   2467   1.7      onoe 	sc->sc_nodeid = val & 0xffff;
   2468  1.28       jmc 
   2469  1.28       jmc 	DPRINTF(("%s: nodeid=0x%04x(%d), rootid=%d, irmid=%d\n",
   2470  1.28       jmc 	    sc->sc_sc1394.sc1394_dev.dv_xname, sc->sc_nodeid,
   2471  1.28       jmc 	    sc->sc_nodeid & OHCI_NodeId_NodeNumber, sc->sc_rootid,
   2472  1.28       jmc 	    sc->sc_irmid));
   2473   1.3      onoe 
   2474   1.3      onoe 	if ((sc->sc_nodeid & OHCI_NodeId_NodeNumber) > sc->sc_rootid)
   2475   1.7      onoe 		return -1;
   2476   1.3      onoe 
   2477   1.3      onoe 	if ((sc->sc_nodeid & OHCI_NodeId_NodeNumber) == sc->sc_rootid)
   2478   1.3      onoe 		OHCI_CSR_WRITE(sc, OHCI_REG_LinkControlSet,
   2479   1.3      onoe 		    OHCI_LinkControl_CycleMaster);
   2480   1.3      onoe 	else
   2481   1.3      onoe 		OHCI_CSR_WRITE(sc, OHCI_REG_LinkControlClear,
   2482   1.3      onoe 		    OHCI_LinkControl_CycleMaster);
   2483   1.7      onoe 	return 0;
   2484   1.3      onoe }
   2485   1.3      onoe 
   2486   1.3      onoe /*
   2487   1.3      onoe  * some CSRs are handled by driver.
   2488   1.3      onoe  */
   2489   1.3      onoe static void
   2490   1.3      onoe fwohci_csr_init(struct fwohci_softc *sc)
   2491   1.3      onoe {
   2492   1.3      onoe 	int i;
   2493   1.3      onoe 	static u_int32_t csr[] = {
   2494   1.3      onoe 	    CSR_STATE_CLEAR, CSR_STATE_SET, CSR_SB_CYCLE_TIME,
   2495   1.3      onoe 	    CSR_SB_BUS_TIME, CSR_SB_BUSY_TIMEOUT, CSR_SB_BUS_MANAGER_ID,
   2496   1.3      onoe 	    CSR_SB_CHANNEL_AVAILABLE_HI, CSR_SB_CHANNEL_AVAILABLE_LO,
   2497   1.3      onoe 	    CSR_SB_BROADCAST_CHANNEL
   2498   1.3      onoe 	};
   2499   1.3      onoe 
   2500   1.3      onoe 	for (i = 0; i < sizeof(csr) / sizeof(csr[0]); i++) {
   2501   1.3      onoe 		fwohci_handler_set(sc, IEEE1394_TCODE_WRITE_REQ_QUAD,
   2502   1.3      onoe 		    CSR_BASE_HI, CSR_BASE_LO + csr[i], fwohci_csr_input, NULL);
   2503   1.3      onoe 		fwohci_handler_set(sc, IEEE1394_TCODE_READ_REQ_QUAD,
   2504   1.3      onoe 		    CSR_BASE_HI, CSR_BASE_LO + csr[i], fwohci_csr_input, NULL);
   2505   1.3      onoe 	}
   2506   1.3      onoe 	sc->sc_csr[CSR_SB_BROADCAST_CHANNEL] = 31;	/*XXX*/
   2507   1.3      onoe }
   2508   1.3      onoe 
   2509   1.3      onoe static int
   2510   1.3      onoe fwohci_csr_input(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *pkt)
   2511   1.3      onoe {
   2512   1.3      onoe 	struct fwohci_pkt res;
   2513   1.3      onoe 	u_int32_t reg;
   2514   1.3      onoe 
   2515   1.3      onoe 	/*
   2516   1.3      onoe 	 * XXX need to do special functionality other than just r/w...
   2517   1.3      onoe 	 */
   2518   1.3      onoe 	reg = pkt->fp_hdr[2] - CSR_BASE_LO;
   2519   1.3      onoe 
   2520   1.3      onoe 	if ((reg & 0x03) != 0) {
   2521   1.3      onoe 		/* alignment error */
   2522   1.3      onoe 		return IEEE1394_RCODE_ADDRESS_ERROR;
   2523   1.3      onoe 	}
   2524  1.28       jmc 	DPRINTFN(1, ("fwohci_csr_input: CSR[0x%04x]: 0x%08x", reg,
   2525  1.28       jmc 	    *(u_int32_t *)(&sc->sc_csr[reg])));
   2526   1.3      onoe 	if (pkt->fp_tcode == IEEE1394_TCODE_WRITE_REQ_QUAD) {
   2527  1.28       jmc 		DPRINTFN(1, (" -> 0x%08x\n",
   2528  1.28       jmc 		    ntohl(*(u_int32_t *)pkt->fp_iov[0].iov_base)));
   2529   1.3      onoe 		*(u_int32_t *)&sc->sc_csr[reg] =
   2530   1.3      onoe 		    ntohl(*(u_int32_t *)pkt->fp_iov[0].iov_base);
   2531   1.3      onoe 	} else {
   2532  1.28       jmc 		DPRINTFN(1, ("\n"));
   2533   1.3      onoe 		res.fp_hdr[3] = htonl(*(u_int32_t *)&sc->sc_csr[reg]);
   2534   1.3      onoe 		res.fp_iov[0].iov_base = &res.fp_hdr[3];
   2535   1.3      onoe 		res.fp_iov[0].iov_len = 4;
   2536   1.9      onoe 		res.fp_uio.uio_resid = 4;
   2537   1.9      onoe 		res.fp_uio.uio_iovcnt = 1;
   2538   1.3      onoe 		fwohci_atrs_output(sc, IEEE1394_RCODE_COMPLETE, pkt, &res);
   2539   1.3      onoe 		return -1;
   2540   1.3      onoe 	}
   2541   1.3      onoe 	return IEEE1394_RCODE_COMPLETE;
   2542   1.3      onoe }
   2543   1.3      onoe 
   2544   1.3      onoe /*
   2545   1.3      onoe  * Mapping between nodeid and unique ID (EUI-64).
   2546  1.24       jmc  *
   2547  1.24       jmc  * Track old mappings and simply update their devices with the new id's when
   2548  1.24       jmc  * they match an existing EUI. This allows proper renumeration of the bus.
   2549   1.3      onoe  */
   2550   1.3      onoe static void
   2551   1.3      onoe fwohci_uid_collect(struct fwohci_softc *sc)
   2552   1.3      onoe {
   2553   1.3      onoe 	int i;
   2554   1.3      onoe 	struct fwohci_uidtbl *fu;
   2555  1.24       jmc 	struct ieee1394_softc *iea;
   2556  1.24       jmc 
   2557  1.24       jmc 	LIST_FOREACH(iea, &sc->sc_nodelist, sc1394_node)
   2558  1.24       jmc 		iea->sc1394_node_id = 0xffff;
   2559   1.3      onoe 
   2560   1.3      onoe 	if (sc->sc_uidtbl != NULL)
   2561   1.3      onoe 		free(sc->sc_uidtbl, M_DEVBUF);
   2562  1.26     enami 	sc->sc_uidtbl = malloc(sizeof(*fu) * (sc->sc_rootid + 1), M_DEVBUF,
   2563  1.49   tsutsui 	    M_NOWAIT|M_ZERO);	/* XXX M_WAITOK requires locks */
   2564  1.36      onoe 	if (sc->sc_uidtbl == NULL)
   2565  1.36      onoe 		return;
   2566   1.3      onoe 
   2567   1.3      onoe 	for (i = 0, fu = sc->sc_uidtbl; i <= sc->sc_rootid; i++, fu++) {
   2568   1.3      onoe 		if (i == (sc->sc_nodeid & OHCI_NodeId_NodeNumber)) {
   2569   1.8      onoe 			memcpy(fu->fu_uid, sc->sc_sc1394.sc1394_guid, 8);
   2570   1.8      onoe 			fu->fu_valid = 3;
   2571  1.26     enami 
   2572  1.26     enami 			iea = (struct ieee1394_softc *)sc->sc_sc1394.sc1394_if;
   2573  1.26     enami 			if (iea) {
   2574  1.26     enami 				iea->sc1394_node_id = i;
   2575  1.28       jmc 				DPRINTF(("%s: Updating nodeid to %d\n",
   2576  1.28       jmc 				    iea->sc1394_dev.dv_xname,
   2577  1.28       jmc 				    iea->sc1394_node_id));
   2578  1.26     enami 			}
   2579  1.36      onoe 		} else {
   2580  1.36      onoe 			fu->fu_valid = 0;
   2581  1.36      onoe 			fwohci_uid_req(sc, i);
   2582   1.3      onoe 		}
   2583   1.3      onoe 	}
   2584  1.26     enami 	if (sc->sc_rootid == 0)
   2585  1.26     enami 		fwohci_check_nodes(sc);
   2586   1.3      onoe }
   2587   1.3      onoe 
   2588  1.36      onoe static void
   2589  1.36      onoe fwohci_uid_req(struct fwohci_softc *sc, int phyid)
   2590  1.36      onoe {
   2591  1.36      onoe 	struct fwohci_pkt pkt;
   2592  1.36      onoe 
   2593  1.36      onoe 	memset(&pkt, 0, sizeof(pkt));
   2594  1.36      onoe 	pkt.fp_tcode = IEEE1394_TCODE_READ_REQ_QUAD;
   2595  1.36      onoe 	pkt.fp_hlen = 12;
   2596  1.36      onoe 	pkt.fp_dlen = 0;
   2597  1.36      onoe 	pkt.fp_hdr[0] = 0x00000100 | (sc->sc_tlabel << 10) |
   2598  1.36      onoe 	    (pkt.fp_tcode << 4);
   2599  1.36      onoe 	pkt.fp_hdr[1] = ((0xffc0 | phyid) << 16) | CSR_BASE_HI;
   2600  1.36      onoe 	pkt.fp_hdr[2] = CSR_BASE_LO + CSR_CONFIG_ROM + 12;
   2601  1.36      onoe 	fwohci_handler_set(sc, IEEE1394_TCODE_READ_RESP_QUAD, phyid,
   2602  1.36      onoe 	    sc->sc_tlabel, fwohci_uid_input, (void *)0);
   2603  1.36      onoe 	sc->sc_tlabel = (sc->sc_tlabel + 1) & 0x3f;
   2604  1.36      onoe 	fwohci_at_output(sc, sc->sc_ctx_atrq, &pkt);
   2605  1.36      onoe 
   2606  1.36      onoe 	pkt.fp_hdr[0] = 0x00000100 | (sc->sc_tlabel << 10) |
   2607  1.36      onoe 	    (pkt.fp_tcode << 4);
   2608  1.36      onoe 	pkt.fp_hdr[2] = CSR_BASE_LO + CSR_CONFIG_ROM + 16;
   2609  1.36      onoe 	fwohci_handler_set(sc, IEEE1394_TCODE_READ_RESP_QUAD, phyid,
   2610  1.36      onoe 	    sc->sc_tlabel, fwohci_uid_input, (void *)1);
   2611  1.36      onoe 	sc->sc_tlabel = (sc->sc_tlabel + 1) & 0x3f;
   2612  1.36      onoe 	fwohci_at_output(sc, sc->sc_ctx_atrq, &pkt);
   2613  1.36      onoe }
   2614  1.36      onoe 
   2615   1.3      onoe static int
   2616   1.3      onoe fwohci_uid_input(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *res)
   2617   1.3      onoe {
   2618   1.8      onoe 	struct fwohci_uidtbl *fu;
   2619  1.24       jmc 	struct ieee1394_softc *iea;
   2620  1.26     enami 	struct ieee1394_attach_args fwa;
   2621  1.26     enami 	int i, n, done, rcode, found;
   2622  1.26     enami 
   2623  1.26     enami 	found = 0;
   2624  1.24       jmc 
   2625  1.26     enami 	n = (res->fp_hdr[1] >> 16) & OHCI_NodeId_NodeNumber;
   2626   1.8      onoe 	rcode = (res->fp_hdr[1] & 0x0000f000) >> 12;
   2627   1.8      onoe 	if (rcode != IEEE1394_RCODE_COMPLETE ||
   2628   1.8      onoe 	    sc->sc_uidtbl == NULL ||
   2629   1.8      onoe 	    n > sc->sc_rootid)
   2630   1.8      onoe 		return 0;
   2631   1.8      onoe 	fu = &sc->sc_uidtbl[n];
   2632   1.8      onoe 	if (arg == 0) {
   2633   1.8      onoe 		memcpy(fu->fu_uid, res->fp_iov[0].iov_base, 4);
   2634   1.8      onoe 		fu->fu_valid |= 0x1;
   2635   1.8      onoe 	} else {
   2636   1.8      onoe 		memcpy(fu->fu_uid + 4, res->fp_iov[0].iov_base, 4);
   2637   1.8      onoe 		fu->fu_valid |= 0x2;
   2638   1.8      onoe 	}
   2639   1.3      onoe #ifdef FW_DEBUG
   2640  1.28       jmc 	if (fu->fu_valid == 0x3)
   2641  1.28       jmc 		DPRINTFN(1, ("fwohci_uid_input: "
   2642   1.8      onoe 		    "Node %d, UID %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n", n,
   2643   1.8      onoe 		    fu->fu_uid[0], fu->fu_uid[1], fu->fu_uid[2], fu->fu_uid[3],
   2644  1.28       jmc 		    fu->fu_uid[4], fu->fu_uid[5], fu->fu_uid[6], fu->fu_uid[7]));
   2645   1.3      onoe #endif
   2646  1.24       jmc 	if (fu->fu_valid == 0x3) {
   2647  1.26     enami 		LIST_FOREACH(iea, &sc->sc_nodelist, sc1394_node)
   2648  1.26     enami 			if (memcmp(iea->sc1394_guid, fu->fu_uid, 8) == 0) {
   2649  1.24       jmc 				found = 1;
   2650  1.24       jmc 				iea->sc1394_node_id = n;
   2651  1.28       jmc 				DPRINTF(("%s: Updating nodeid to %d\n",
   2652  1.28       jmc 				    iea->sc1394_dev.dv_xname,
   2653  1.28       jmc 				    iea->sc1394_node_id));
   2654  1.24       jmc 				break;
   2655  1.24       jmc 			}
   2656  1.24       jmc 		if (!found) {
   2657  1.26     enami 			strcpy(fwa.name, "fwnode");
   2658  1.26     enami 			memcpy(fwa.uid, fu->fu_uid, 8);
   2659  1.24       jmc 			fwa.nodeid = n;
   2660  1.29       jmc 			fwa.read = fwohci_read;
   2661  1.29       jmc 			fwa.write = fwohci_write;
   2662  1.26     enami 			fwa.inreg = fwohci_inreg;
   2663  1.51       jmc 			fwa.unreg = fwohci_unreg;
   2664  1.26     enami 			iea = (struct ieee1394_softc *)
   2665  1.30       jmc 			    config_found_sm(&sc->sc_sc1394.sc1394_dev, &fwa,
   2666  1.30       jmc 			    fwohci_print, fwohci_submatch);
   2667  1.27     enami 			if (iea != NULL)
   2668  1.27     enami 				LIST_INSERT_HEAD(&sc->sc_nodelist, iea,
   2669  1.27     enami 				    sc1394_node);
   2670  1.24       jmc 		}
   2671  1.24       jmc 	}
   2672  1.26     enami 	done = 1;
   2673  1.26     enami 
   2674  1.26     enami 	for (i = 0; i < sc->sc_rootid + 1; i++) {
   2675  1.26     enami 		fu = &sc->sc_uidtbl[i];
   2676  1.26     enami 		if (fu->fu_valid != 0x3) {
   2677  1.26     enami 			done = 0;
   2678  1.26     enami 			break;
   2679  1.26     enami 		}
   2680  1.26     enami 	}
   2681  1.26     enami 	if (done)
   2682  1.26     enami 		fwohci_check_nodes(sc);
   2683  1.26     enami 
   2684  1.26     enami 	return 0;
   2685  1.24       jmc }
   2686  1.24       jmc 
   2687  1.24       jmc static void
   2688  1.24       jmc fwohci_check_nodes(struct fwohci_softc *sc)
   2689  1.24       jmc {
   2690  1.26     enami 	struct device *detach = NULL;
   2691  1.26     enami 	struct ieee1394_softc *iea;
   2692  1.26     enami 
   2693  1.26     enami 	LIST_FOREACH(iea, &sc->sc_nodelist, sc1394_node) {
   2694  1.28       jmc 
   2695  1.26     enami 		/*
   2696  1.26     enami 		 * Have to defer detachment until the next
   2697  1.26     enami 		 * loop iteration since config_detach
   2698  1.26     enami 		 * free's the softc and the loop iterator
   2699  1.26     enami 		 * needs data from the softc to move
   2700  1.26     enami 		 * forward.
   2701  1.26     enami 		 */
   2702  1.26     enami 
   2703  1.26     enami 		if (detach) {
   2704  1.26     enami 			config_detach(detach, 0);
   2705  1.26     enami 			detach = NULL;
   2706  1.26     enami 		}
   2707  1.26     enami 		if (iea->sc1394_node_id == 0xffff) {
   2708  1.26     enami 			detach = (struct device *)iea;
   2709  1.26     enami 			LIST_REMOVE(iea, sc1394_node);
   2710  1.26     enami 		}
   2711  1.26     enami 	}
   2712  1.26     enami 	if (detach)
   2713  1.26     enami 		config_detach(detach, 0);
   2714   1.3      onoe }
   2715   1.3      onoe 
   2716   1.3      onoe static int
   2717   1.8      onoe fwohci_uid_lookup(struct fwohci_softc *sc, const u_int8_t *uid)
   2718   1.3      onoe {
   2719   1.3      onoe 	struct fwohci_uidtbl *fu;
   2720   1.3      onoe 	int n;
   2721   1.3      onoe 	static const u_int8_t bcast[] =
   2722   1.3      onoe 	    { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
   2723   1.3      onoe 
   2724  1.26     enami 	fu = sc->sc_uidtbl;
   2725   1.3      onoe 	if (fu == NULL) {
   2726   1.8      onoe 		if (memcmp(uid, bcast, sizeof(bcast)) == 0)
   2727   1.8      onoe 			return IEEE1394_BCAST_PHY_ID;
   2728   1.3      onoe 		fwohci_uid_collect(sc); /* try to get */
   2729   1.3      onoe 		return -1;
   2730   1.3      onoe 	}
   2731  1.36      onoe 	for (n = 0; n <= sc->sc_rootid; n++, fu++) {
   2732   1.8      onoe 		if (fu->fu_valid == 0x3 && memcmp(fu->fu_uid, uid, 8) == 0)
   2733  1.36      onoe 			return n;
   2734  1.36      onoe 	}
   2735  1.36      onoe 	if (memcmp(uid, bcast, sizeof(bcast)) == 0)
   2736  1.36      onoe 		return IEEE1394_BCAST_PHY_ID;
   2737  1.36      onoe 	for (n = 0, fu = sc->sc_uidtbl; n <= sc->sc_rootid; n++, fu++) {
   2738  1.36      onoe 		if (fu->fu_valid != 0x3) {
   2739  1.36      onoe 			/*
   2740  1.36      onoe 			 * XXX: need timer before retransmission
   2741  1.36      onoe 			 */
   2742  1.36      onoe 			fwohci_uid_req(sc, n);
   2743  1.36      onoe 		}
   2744   1.3      onoe 	}
   2745  1.36      onoe 	return -1;
   2746   1.3      onoe }
   2747   1.3      onoe 
   2748   1.3      onoe /*
   2749   1.3      onoe  * functions to support network interface
   2750   1.3      onoe  */
   2751   1.3      onoe static int
   2752   1.3      onoe fwohci_if_inreg(struct device *self, u_int32_t offhi, u_int32_t offlo,
   2753   1.3      onoe     void (*handler)(struct device *, struct mbuf *))
   2754   1.3      onoe {
   2755   1.3      onoe 	struct fwohci_softc *sc = (struct fwohci_softc *)self;
   2756  1.26     enami 
   2757  1.26     enami 	fwohci_handler_set(sc, IEEE1394_TCODE_WRITE_REQ_BLOCK, offhi, offlo,
   2758  1.38      onoe 	    handler ? fwohci_if_input : NULL, handler);
   2759  1.26     enami 	fwohci_handler_set(sc, IEEE1394_TCODE_STREAM_DATA,
   2760  1.40      haya 	    (sc->sc_csr[CSR_SB_BROADCAST_CHANNEL] & IEEE1394_ISOCH_MASK) | OHCI_ASYNC_STREAM,
   2761  1.38      onoe 	    IEEE1394_TAG_GASP, handler ? fwohci_if_input : NULL, handler);
   2762   1.3      onoe 	return 0;
   2763   1.3      onoe }
   2764   1.3      onoe 
   2765   1.3      onoe static int
   2766   1.3      onoe fwohci_if_input(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *pkt)
   2767   1.3      onoe {
   2768   1.4  jdolecek 	int n, len;
   2769   1.3      onoe 	struct mbuf *m;
   2770   1.3      onoe 	struct iovec *iov;
   2771   1.3      onoe 	void (*handler)(struct device *, struct mbuf *) = arg;
   2772   1.3      onoe 
   2773   1.3      onoe #ifdef FW_DEBUG
   2774  1.28       jmc 	int i;
   2775  1.28       jmc 	DPRINTFN(1, ("fwohci_if_input: tcode=0x%x, dlen=%d", pkt->fp_tcode,
   2776  1.28       jmc 	    pkt->fp_dlen));
   2777  1.28       jmc 	for (i = 0; i < pkt->fp_hlen/4; i++)
   2778  1.37      onoe 		DPRINTFN(2, ("%s%08x", i?" ":"\n    ", pkt->fp_hdr[i]));
   2779  1.28       jmc 	DPRINTFN(2, ("$"));
   2780  1.28       jmc 	for (n = 0, len = pkt->fp_dlen; len > 0; len -= i, n++){
   2781  1.28       jmc 		iov = &pkt->fp_iov[n];
   2782  1.28       jmc 		for (i = 0; i < iov->iov_len; i++)
   2783  1.37      onoe 			DPRINTFN(2, ("%s%02x", (i%32)?((i%4)?"":" "):"\n    ",
   2784  1.28       jmc 			    ((u_int8_t *)iov->iov_base)[i]));
   2785  1.28       jmc 		DPRINTFN(2, ("$"));
   2786   1.5      matt 	}
   2787  1.28       jmc 	DPRINTFN(1, ("\n"));
   2788   1.3      onoe #endif /* FW_DEBUG */
   2789   1.3      onoe 	len = pkt->fp_dlen;
   2790   1.3      onoe 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   2791   1.3      onoe 	if (m == NULL)
   2792   1.3      onoe 		return IEEE1394_RCODE_COMPLETE;
   2793  1.15      onoe 	m->m_len = 16;
   2794   1.8      onoe 	if (len + m->m_len > MHLEN) {
   2795   1.3      onoe 		MCLGET(m, M_DONTWAIT);
   2796   1.3      onoe 		if ((m->m_flags & M_EXT) == 0) {
   2797   1.3      onoe 			m_freem(m);
   2798   1.3      onoe 			return IEEE1394_RCODE_COMPLETE;
   2799   1.3      onoe 		}
   2800   1.3      onoe 	}
   2801   1.8      onoe 	n = (pkt->fp_hdr[1] >> 16) & OHCI_NodeId_NodeNumber;
   2802  1.26     enami 	if (sc->sc_uidtbl == NULL || n > sc->sc_rootid ||
   2803   1.8      onoe 	    sc->sc_uidtbl[n].fu_valid != 0x3) {
   2804   1.8      onoe 		printf("%s: packet from unknown node: phy id %d\n",
   2805   1.8      onoe 		    sc->sc_sc1394.sc1394_dev.dv_xname, n);
   2806  1.26     enami 		m_freem(m);
   2807  1.36      onoe 		fwohci_uid_req(sc, n);
   2808   1.8      onoe 		return IEEE1394_RCODE_COMPLETE;
   2809   1.8      onoe 	}
   2810   1.8      onoe 	memcpy(mtod(m, caddr_t), sc->sc_uidtbl[n].fu_uid, 8);
   2811   1.8      onoe 	if (pkt->fp_tcode == IEEE1394_TCODE_STREAM_DATA) {
   2812   1.8      onoe 		m->m_flags |= M_BCAST;
   2813   1.8      onoe 		mtod(m, u_int32_t *)[2] = mtod(m, u_int32_t *)[3] = 0;
   2814   1.8      onoe 	} else {
   2815   1.8      onoe 		mtod(m, u_int32_t *)[2] = htonl(pkt->fp_hdr[1]);
   2816   1.8      onoe 		mtod(m, u_int32_t *)[3] = htonl(pkt->fp_hdr[2]);
   2817   1.8      onoe 	}
   2818   1.8      onoe 	mtod(m, u_int8_t *)[8] = n;	/*XXX: node id for debug */
   2819   1.8      onoe 	mtod(m, u_int8_t *)[9] =
   2820   1.8      onoe 	    (*pkt->fp_trail >> (16 + OHCI_CTXCTL_SPD_BITPOS)) &
   2821   1.8      onoe 	    ((1 << OHCI_CTXCTL_SPD_BITLEN) - 1);
   2822   1.8      onoe 
   2823   1.8      onoe 	m->m_pkthdr.rcvif = NULL;	/* set in child */
   2824   1.8      onoe 	m->m_pkthdr.len = len + m->m_len;
   2825   1.3      onoe 	/*
   2826   1.3      onoe 	 * We may use receive buffer by external mbuf instead of copy here.
   2827   1.3      onoe 	 * But asynchronous receive buffer must be operate in buffer fill
   2828   1.3      onoe 	 * mode, so that each receive buffer will shared by multiple mbufs.
   2829   1.3      onoe 	 * If upper layer doesn't free mbuf soon, e.g. application program
   2830   1.3      onoe 	 * is suspended, buffer must be reallocated.
   2831   1.3      onoe 	 * Isochronous buffer must be operate in packet buffer mode, and
   2832   1.3      onoe 	 * it is easy to map receive buffer to external mbuf.  But it is
   2833   1.3      onoe 	 * used for broadcast/multicast only, and is expected not so
   2834   1.3      onoe 	 * performance sensitive for now.
   2835   1.3      onoe 	 * XXX: The performance may be important for multicast case,
   2836   1.3      onoe 	 * so we should revisit here later.
   2837   1.3      onoe 	 *						-- onoe
   2838   1.3      onoe 	 */
   2839   1.3      onoe 	n = 0;
   2840   1.9      onoe 	iov = pkt->fp_uio.uio_iov;
   2841   1.3      onoe 	while (len > 0) {
   2842   1.3      onoe 		memcpy(mtod(m, caddr_t) + m->m_len, iov->iov_base,
   2843   1.3      onoe 		    iov->iov_len);
   2844  1.26     enami 		m->m_len += iov->iov_len;
   2845  1.26     enami 		len -= iov->iov_len;
   2846   1.3      onoe 		iov++;
   2847   1.3      onoe 	}
   2848   1.3      onoe 	(*handler)(sc->sc_sc1394.sc1394_if, m);
   2849   1.3      onoe 	return IEEE1394_RCODE_COMPLETE;
   2850   1.3      onoe }
   2851  1.40      haya 
   2852  1.40      haya static int
   2853  1.40      haya fwohci_if_input_iso(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *pkt)
   2854  1.40      haya {
   2855  1.40      haya 	int n, len;
   2856  1.40      haya 	int chan, tag;
   2857  1.40      haya 	struct mbuf *m;
   2858  1.40      haya 	struct iovec *iov;
   2859  1.40      haya 	void (*handler)(struct device *, struct mbuf *) = arg;
   2860  1.41      onoe #ifdef FW_DEBUG
   2861  1.41      onoe 	int i;
   2862  1.41      onoe #endif
   2863  1.40      haya 
   2864  1.40      haya 	chan = (pkt->fp_hdr[0] & 0x00003f00) >> 8;
   2865  1.40      haya 	tag  = (pkt->fp_hdr[0] & 0x0000c000) >> 14;
   2866  1.40      haya #ifdef FW_DEBUG
   2867  1.41      onoe 	DPRINTFN(1, ("fwohci_if_input_iso: "
   2868  1.41      onoe 	    "tcode=0x%x, chan=%d, tag=%x, dlen=%d",
   2869  1.41      onoe 	    pkt->fp_tcode, chan, tag, pkt->fp_dlen));
   2870  1.41      onoe 	for (i = 0; i < pkt->fp_hlen/4; i++)
   2871  1.41      onoe 		DPRINTFN(2, ("%s%08x", i?" ":"\n\t", pkt->fp_hdr[i]));
   2872  1.41      onoe 	DPRINTFN(2, ("$"));
   2873  1.41      onoe 	for (n = 0, len = pkt->fp_dlen; len > 0; len -= i, n++){
   2874  1.41      onoe 		iov = &pkt->fp_iov[n];
   2875  1.41      onoe 		for (i = 0; i < iov->iov_len; i++)
   2876  1.41      onoe 			DPRINTFN(2, ("%s%02x",
   2877  1.41      onoe 			    (i%32)?((i%4)?"":" "):"\n\t",
   2878  1.41      onoe 			    ((u_int8_t *)iov->iov_base)[i]));
   2879  1.41      onoe 		DPRINTFN(2, ("$"));
   2880  1.40      haya 	}
   2881  1.41      onoe 	DPRINTFN(2, ("\n"));
   2882  1.40      haya #endif /* FW_DEBUG */
   2883  1.40      haya 	len = pkt->fp_dlen;
   2884  1.40      haya 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   2885  1.40      haya 	if (m == NULL)
   2886  1.40      haya 		return IEEE1394_RCODE_COMPLETE;
   2887  1.40      haya 	m->m_len = 16;
   2888  1.40      haya 	if (m->m_len + len > MHLEN) {
   2889  1.40      haya 		MCLGET(m, M_DONTWAIT);
   2890  1.40      haya 		if ((m->m_flags & M_EXT) == 0) {
   2891  1.40      haya 			m_freem(m);
   2892  1.40      haya 			return IEEE1394_RCODE_COMPLETE;
   2893  1.40      haya 		}
   2894  1.40      haya 	}
   2895  1.40      haya 
   2896  1.40      haya 	m->m_flags |= M_BCAST;
   2897  1.40      haya 
   2898  1.40      haya 	if (tag == IEEE1394_TAG_GASP) {
   2899  1.40      haya 		n = (pkt->fp_hdr[1] >> 16) & OHCI_NodeId_NodeNumber;
   2900  1.40      haya 		if (sc->sc_uidtbl == NULL || n > sc->sc_rootid ||
   2901  1.40      haya 		    sc->sc_uidtbl[n].fu_valid != 0x3) {
   2902  1.40      haya 			printf("%s: packet from unknown node: phy id %d\n",
   2903  1.40      haya 			    sc->sc_sc1394.sc1394_dev.dv_xname, n);
   2904  1.40      haya 			m_freem(m);
   2905  1.40      haya 			return IEEE1394_RCODE_COMPLETE;
   2906  1.40      haya 		}
   2907  1.40      haya 		memcpy(mtod(m, caddr_t), sc->sc_uidtbl[n].fu_uid, 8);
   2908  1.40      haya 		mtod(m, u_int32_t *)[2] = htonl(pkt->fp_hdr[1]);
   2909  1.40      haya 		mtod(m, u_int32_t *)[3] = htonl(pkt->fp_hdr[2]);
   2910  1.40      haya 		mtod(m, u_int8_t *)[8] = n;	/*XXX: node id for debug */
   2911  1.40      haya 		mtod(m, u_int8_t *)[9] =
   2912  1.40      haya 		    (*pkt->fp_trail >> (16 + OHCI_CTXCTL_SPD_BITPOS)) &
   2913  1.40      haya 		    ((1 << OHCI_CTXCTL_SPD_BITLEN) - 1);
   2914  1.40      haya 	} else {
   2915  1.40      haya 		m->m_flags |= M_LINK0;
   2916  1.40      haya 	}
   2917  1.40      haya 	mtod(m, u_int8_t *)[14] = chan;
   2918  1.40      haya 	mtod(m, u_int8_t *)[15] = tag;
   2919  1.40      haya 
   2920  1.40      haya 
   2921  1.40      haya 	m->m_pkthdr.rcvif = NULL;	/* set in child */
   2922  1.40      haya 	m->m_pkthdr.len = len + m->m_len;
   2923  1.40      haya 	/*
   2924  1.40      haya 	 * We may use receive buffer by external mbuf instead of copy here.
   2925  1.40      haya 	 * But asynchronous receive buffer must be operate in buffer fill
   2926  1.40      haya 	 * mode, so that each receive buffer will shared by multiple mbufs.
   2927  1.40      haya 	 * If upper layer doesn't free mbuf soon, e.g. application program
   2928  1.40      haya 	 * is suspended, buffer must be reallocated.
   2929  1.40      haya 	 * Isochronous buffer must be operate in packet buffer mode, and
   2930  1.40      haya 	 * it is easy to map receive buffer to external mbuf.  But it is
   2931  1.40      haya 	 * used for broadcast/multicast only, and is expected not so
   2932  1.40      haya 	 * performance sensitive for now.
   2933  1.40      haya 	 * XXX: The performance may be important for multicast case,
   2934  1.40      haya 	 * so we should revisit here later.
   2935  1.40      haya 	 *						-- onoe
   2936  1.40      haya 	 */
   2937  1.40      haya 	n = 0;
   2938  1.40      haya 	iov = pkt->fp_uio.uio_iov;
   2939  1.40      haya 	while (len > 0) {
   2940  1.40      haya 		memcpy(mtod(m, caddr_t) + m->m_len, iov->iov_base,
   2941  1.40      haya 		    iov->iov_len);
   2942  1.40      haya 	        m->m_len += iov->iov_len;
   2943  1.40      haya 	        len -= iov->iov_len;
   2944  1.40      haya 		iov++;
   2945  1.40      haya 	}
   2946  1.40      haya 	(*handler)(sc->sc_sc1394.sc1394_if, m);
   2947  1.40      haya 	return IEEE1394_RCODE_COMPLETE;
   2948  1.40      haya }
   2949  1.40      haya 
   2950  1.40      haya 
   2951   1.3      onoe 
   2952   1.3      onoe static int
   2953   1.3      onoe fwohci_if_output(struct device *self, struct mbuf *m0,
   2954   1.3      onoe     void (*callback)(struct device *, struct mbuf *))
   2955   1.3      onoe {
   2956  1.26     enami 	struct fwohci_softc *sc = (struct fwohci_softc *)self;
   2957   1.3      onoe 	struct fwohci_pkt pkt;
   2958   1.3      onoe 	u_int8_t *p;
   2959  1.24       jmc 	int n, error, spd, hdrlen, maxrec;
   2960  1.28       jmc #ifdef FW_DEBUG
   2961  1.28       jmc 	struct mbuf *m;
   2962  1.28       jmc #endif
   2963   1.8      onoe 
   2964   1.8      onoe 	p = mtod(m0, u_int8_t *);
   2965   1.9      onoe 	if (m0->m_flags & (M_BCAST | M_MCAST)) {
   2966   1.8      onoe 		spd = IEEE1394_SPD_S100;	/*XXX*/
   2967   1.8      onoe 		maxrec = 512;			/*XXX*/
   2968   1.8      onoe 		hdrlen = 8;
   2969   1.8      onoe 	} else {
   2970   1.8      onoe 		n = fwohci_uid_lookup(sc, p);
   2971   1.8      onoe 		if (n < 0) {
   2972   1.8      onoe 			printf("%s: nodeid unknown:"
   2973   1.8      onoe 			    " %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
   2974   1.8      onoe 			    sc->sc_sc1394.sc1394_dev.dv_xname,
   2975   1.8      onoe 			    p[0], p[1], p[2], p[3], p[4], p[5], p[6], p[7]);
   2976   1.8      onoe 			error = EHOSTUNREACH;
   2977   1.8      onoe 			goto end;
   2978   1.8      onoe 		}
   2979   1.8      onoe 		if (n == IEEE1394_BCAST_PHY_ID) {
   2980  1.26     enami 			printf("%s: broadcast with !M_MCAST\n",
   2981   1.8      onoe 			    sc->sc_sc1394.sc1394_dev.dv_xname);
   2982   1.8      onoe #ifdef FW_DEBUG
   2983  1.28       jmc 			DPRINTFN(2, ("packet:"));
   2984  1.28       jmc 			for (m = m0; m != NULL; m = m->m_next) {
   2985  1.28       jmc 				for (n = 0; n < m->m_len; n++)
   2986  1.28       jmc 					DPRINTFN(2, ("%s%02x", (n%32)?
   2987  1.37      onoe 					    ((n%4)?"":" "):"\n    ",
   2988  1.28       jmc 					    mtod(m, u_int8_t *)[n]));
   2989  1.28       jmc 				DPRINTFN(2, ("$"));
   2990   1.8      onoe 			}
   2991  1.28       jmc 			DPRINTFN(2, ("\n"));
   2992   1.8      onoe #endif
   2993   1.8      onoe 			error = EHOSTUNREACH;
   2994   1.8      onoe 			goto end;
   2995   1.8      onoe 		}
   2996   1.8      onoe 		maxrec = 2 << p[8];
   2997   1.8      onoe 		spd = p[9];
   2998   1.8      onoe 		hdrlen = 0;
   2999   1.8      onoe 	}
   3000  1.26     enami 	if (spd > sc->sc_sc1394.sc1394_link_speed) {
   3001  1.28       jmc 		DPRINTF(("fwohci_if_output: spd (%d) is faster than %d\n",
   3002  1.28       jmc 		    spd, sc->sc_sc1394.sc1394_link_speed));
   3003   1.8      onoe 		spd = sc->sc_sc1394.sc1394_link_speed;
   3004   1.8      onoe 	}
   3005  1.26     enami 	if (maxrec > (512 << spd)) {
   3006  1.28       jmc 		DPRINTF(("fwohci_if_output: maxrec (%d) is larger for spd (%d)"
   3007  1.28       jmc 		    "\n", maxrec, spd));
   3008   1.8      onoe 		maxrec = 512 << spd;
   3009   1.8      onoe 	}
   3010   1.8      onoe 	while (maxrec > sc->sc_sc1394.sc1394_max_receive) {
   3011  1.28       jmc 		DPRINTF(("fwohci_if_output: maxrec (%d) is larger than"
   3012  1.28       jmc 		    " %d\n", maxrec, sc->sc_sc1394.sc1394_max_receive));
   3013   1.8      onoe 		maxrec >>= 1;
   3014   1.8      onoe 	}
   3015   1.8      onoe 	if (maxrec < 512) {
   3016  1.28       jmc 		DPRINTF(("fwohci_if_output: maxrec (%d) is smaller than "
   3017  1.28       jmc 		    "minimum\n", maxrec));
   3018   1.8      onoe 		maxrec = 512;
   3019   1.8      onoe 	}
   3020   1.8      onoe 
   3021   1.8      onoe 	m_adj(m0, 16 - hdrlen);
   3022   1.8      onoe 	if (m0->m_pkthdr.len > maxrec) {
   3023  1.28       jmc 		DPRINTF(("fwohci_if_output: packet too big: hdr %d, pktlen "
   3024  1.28       jmc 		    "%d, maxrec %d\n", hdrlen, m0->m_pkthdr.len, maxrec));
   3025   1.8      onoe 		error = E2BIG;	/*XXX*/
   3026   1.8      onoe 		goto end;
   3027   1.8      onoe 	}
   3028   1.3      onoe 
   3029   1.3      onoe 	memset(&pkt, 0, sizeof(pkt));
   3030   1.9      onoe 	pkt.fp_uio.uio_iov = pkt.fp_iov;
   3031   1.9      onoe 	pkt.fp_uio.uio_segflg = UIO_SYSSPACE;
   3032   1.9      onoe 	pkt.fp_uio.uio_rw = UIO_WRITE;
   3033   1.9      onoe 	if (m0->m_flags & (M_BCAST | M_MCAST)) {
   3034   1.3      onoe 		/* construct GASP header */
   3035   1.3      onoe 		p = mtod(m0, u_int8_t *);
   3036   1.3      onoe 		p[0] = sc->sc_nodeid >> 8;
   3037   1.3      onoe 		p[1] = sc->sc_nodeid & 0xff;
   3038   1.3      onoe 		p[2] = 0x00; p[3] = 0x00; p[4] = 0x5e;
   3039   1.3      onoe 		p[5] = 0x00; p[6] = 0x00; p[7] = 0x01;
   3040   1.3      onoe 		pkt.fp_tcode = IEEE1394_TCODE_STREAM_DATA;
   3041   1.3      onoe 		pkt.fp_hlen = 8;
   3042   1.8      onoe 		pkt.fp_hdr[0] = (spd << 16) | (IEEE1394_TAG_GASP << 14) |
   3043   1.3      onoe 		    ((sc->sc_csr[CSR_SB_BROADCAST_CHANNEL] &
   3044   1.3      onoe 		    OHCI_NodeId_NodeNumber) << 8);
   3045   1.3      onoe 		pkt.fp_hdr[1] = m0->m_pkthdr.len << 16;
   3046   1.3      onoe 	} else {
   3047   1.3      onoe 		pkt.fp_tcode = IEEE1394_TCODE_WRITE_REQ_BLOCK;
   3048   1.3      onoe 		pkt.fp_hlen = 16;
   3049   1.3      onoe 		pkt.fp_hdr[0] = 0x00800100 | (sc->sc_tlabel << 10) |
   3050   1.8      onoe 		    (spd << 16);
   3051   1.3      onoe 		pkt.fp_hdr[1] =
   3052   1.3      onoe 		    (((sc->sc_nodeid & OHCI_NodeId_BusNumber) | n) << 16) |
   3053   1.3      onoe 		    (p[10] << 8) | p[11];
   3054   1.3      onoe 		pkt.fp_hdr[2] = (p[12]<<24) | (p[13]<<16) | (p[14]<<8) | p[15];
   3055   1.3      onoe 		pkt.fp_hdr[3] = m0->m_pkthdr.len << 16;
   3056   1.3      onoe 		sc->sc_tlabel = (sc->sc_tlabel + 1) & 0x3f;
   3057   1.3      onoe 	}
   3058   1.3      onoe 	pkt.fp_hdr[0] |= (pkt.fp_tcode << 4);
   3059   1.3      onoe 	pkt.fp_dlen = m0->m_pkthdr.len;
   3060   1.3      onoe 	pkt.fp_m = m0;
   3061   1.3      onoe 	pkt.fp_callback = callback;
   3062   1.3      onoe 	error = fwohci_at_output(sc, sc->sc_ctx_atrq, &pkt);
   3063   1.9      onoe 	m0 = pkt.fp_m;
   3064   1.3      onoe   end:
   3065  1.15      onoe 	if (m0 != NULL) {
   3066   1.3      onoe 		if (callback)
   3067   1.3      onoe 			(*callback)(sc->sc_sc1394.sc1394_if, m0);
   3068   1.3      onoe 		else
   3069   1.3      onoe 			m_freem(m0);
   3070   1.3      onoe 	}
   3071   1.3      onoe 	return error;
   3072  1.24       jmc }
   3073  1.24       jmc 
   3074  1.24       jmc /*
   3075  1.24       jmc  * High level routines to provide abstraction to attaching layers to
   3076  1.24       jmc  * send/receive data.
   3077  1.24       jmc  */
   3078  1.24       jmc 
   3079  1.31       jmc /*
   3080  1.31       jmc  * These break down into 4 routines as follows:
   3081  1.31       jmc  *
   3082  1.31       jmc  * int fwohci_read(struct ieee1394_abuf *)
   3083  1.31       jmc  *
   3084  1.31       jmc  * This routine will attempt to read a region from the requested node.
   3085  1.31       jmc  * A callback must be provided which will be called when either the completed
   3086  1.31       jmc  * read is done or an unrecoverable error occurs. This is mainly a convenience
   3087  1.31       jmc  * routine since it will encapsulate retrying a region as quadlet vs. block reads
   3088  1.31       jmc  * and recombining all the returned data. This could also be done with a series
   3089  1.31       jmc  * of write/inreg's for each packet sent.
   3090  1.31       jmc  *
   3091  1.31       jmc  * int fwohci_write(struct ieee1394_abuf *)
   3092  1.31       jmc  *
   3093  1.31       jmc  * The work horse main entry point for putting packets on the bus. This is the
   3094  1.31       jmc  * generalized interface for fwnode/etc code to put packets out onto the bus.
   3095  1.31       jmc  * It accepts all standard ieee1394 tcodes (XXX: only a few today) and optionally
   3096  1.31       jmc  * will callback via a func pointer to the calling code with the resulting ACK
   3097  1.31       jmc  * code from the packet. If the ACK code is to be ignored (i.e. no cb) then the
   3098  1.31       jmc  * write routine will take care of free'ing the abuf since the fwnode/etc code
   3099  1.31       jmc  * won't have any knowledge of when to do this. This allows for simple one-off
   3100  1.31       jmc  * packets to be sent from the upper-level code without worrying about a callback
   3101  1.31       jmc  * for cleanup.
   3102  1.31       jmc  *
   3103  1.31       jmc  * int fwohci_inreg(struct ieee1394_abuf *, int)
   3104  1.31       jmc  *
   3105  1.31       jmc  * This is very simple. It evals the abuf passed in and registers an internal
   3106  1.31       jmc  * handler as the callback for packets received for that operation.
   3107  1.31       jmc  * The integer argument specifies whether on a block read/write operation to
   3108  1.31       jmc  * allow sub-regions to be read/written (in block form) as well.
   3109  1.31       jmc  *
   3110  1.31       jmc  * XXX: This whole structure needs to be redone as a list of regions and
   3111  1.31       jmc  * operations allowed on those regions.
   3112  1.31       jmc  *
   3113  1.31       jmc  * int fwohci_unreg(struct ieee1394_abuf *, int)
   3114  1.31       jmc  *
   3115  1.31       jmc  * This simply unregisters the respective callback done via inreg for items
   3116  1.31       jmc  * which only need to register an area for a one-time operation (like a status
   3117  1.31       jmc  * buffer a remote node will write to when the current operation is done). The
   3118  1.31       jmc  * int argument specifies the same behavior as inreg, except in reverse (i.e.
   3119  1.31       jmc  * it unregisters).
   3120  1.31       jmc  */
   3121  1.31       jmc 
   3122  1.24       jmc static int
   3123  1.29       jmc fwohci_read(struct ieee1394_abuf *ab)
   3124  1.24       jmc {
   3125  1.26     enami 	struct fwohci_pkt pkt;
   3126  1.29       jmc 	struct ieee1394_softc *sc = ab->ab_req;
   3127  1.26     enami 	struct fwohci_softc *psc =
   3128  1.26     enami 	    (struct fwohci_softc *)sc->sc1394_dev.dv_parent;
   3129  1.31       jmc 	struct fwohci_cb *fcb;
   3130  1.26     enami 	u_int32_t high, lo;
   3131  1.26     enami 	int rv, tcode;
   3132  1.26     enami 
   3133  1.31       jmc 	/* Have to have a callback when reading. */
   3134  1.31       jmc 	if (ab->ab_cb == NULL)
   3135  1.31       jmc 		return -1;
   3136  1.31       jmc 
   3137  1.31       jmc 	fcb = malloc(sizeof(struct fwohci_cb), M_DEVBUF, M_WAITOK);
   3138  1.31       jmc 	fcb->ab = ab;
   3139  1.31       jmc 	fcb->count = 0;
   3140  1.31       jmc 	fcb->abuf_valid = 1;
   3141  1.31       jmc 
   3142  1.51       jmc 	high = ((ab->ab_addr & 0x0000ffff00000000) >> 32);
   3143  1.51       jmc 	lo = (ab->ab_addr & 0x00000000ffffffff);
   3144  1.26     enami 
   3145  1.24       jmc 	memset(&pkt, 0, sizeof(pkt));
   3146  1.29       jmc 	pkt.fp_hdr[1] = ((0xffc0 | ab->ab_req->sc1394_node_id) << 16) | high;
   3147  1.26     enami 	pkt.fp_hdr[2] = lo;
   3148  1.26     enami 	pkt.fp_dlen = 0;
   3149  1.26     enami 
   3150  1.26     enami 	if (ab->ab_length == 4) {
   3151  1.26     enami 		pkt.fp_tcode = IEEE1394_TCODE_READ_REQ_QUAD;
   3152  1.26     enami 		tcode = IEEE1394_TCODE_READ_RESP_QUAD;
   3153  1.26     enami 		pkt.fp_hlen = 12;
   3154  1.26     enami 	} else {
   3155  1.26     enami 		pkt.fp_tcode = IEEE1394_TCODE_READ_REQ_BLOCK;
   3156  1.26     enami 		pkt.fp_hlen = 16;
   3157  1.26     enami 		tcode = IEEE1394_TCODE_READ_RESP_BLOCK;
   3158  1.26     enami 		pkt.fp_hdr[3] = (ab->ab_length << 16);
   3159  1.26     enami 	}
   3160  1.26     enami 	pkt.fp_hdr[0] = 0x00000100 | (sc->sc1394_link_speed << 16) |
   3161  1.26     enami 	    (psc->sc_tlabel << 10) | (pkt.fp_tcode << 4);
   3162  1.26     enami 
   3163  1.31       jmc 	pkt.fp_statusarg = fcb;
   3164  1.31       jmc 	pkt.fp_statuscb = fwohci_read_resp;
   3165  1.29       jmc 
   3166  1.29       jmc 	rv = fwohci_handler_set(psc, tcode, ab->ab_req->sc1394_node_id,
   3167  1.31       jmc 	    psc->sc_tlabel, fwohci_read_resp, fcb);
   3168  1.26     enami 	if (rv)
   3169  1.26     enami 		return rv;
   3170  1.31       jmc 	rv = fwohci_at_output(psc, psc->sc_ctx_atrq, &pkt);
   3171  1.31       jmc 	if (rv)
   3172  1.31       jmc 		fwohci_handler_set(psc, tcode, ab->ab_req->sc1394_node_id,
   3173  1.31       jmc 		    psc->sc_tlabel, NULL, NULL);
   3174  1.26     enami 	psc->sc_tlabel = (psc->sc_tlabel + 1) & 0x3f;
   3175  1.31       jmc 	fcb->count = 1;
   3176  1.26     enami 	return rv;
   3177  1.24       jmc }
   3178  1.24       jmc 
   3179  1.24       jmc static int
   3180  1.29       jmc fwohci_write(struct ieee1394_abuf *ab)
   3181  1.24       jmc {
   3182  1.26     enami 	struct fwohci_pkt pkt;
   3183  1.29       jmc 	struct ieee1394_softc *sc = ab->ab_req;
   3184  1.26     enami 	struct fwohci_softc *psc =
   3185  1.26     enami 	    (struct fwohci_softc *)sc->sc1394_dev.dv_parent;
   3186  1.26     enami 	u_int32_t high, lo;
   3187  1.26     enami 	int rv;
   3188  1.26     enami 
   3189  1.51       jmc 	if (ab->ab_length > IEEE1394_MAX_REC(sc->sc1394_max_receive)) {
   3190  1.28       jmc 		DPRINTF(("Packet too large: %d\n", ab->ab_length));
   3191  1.26     enami 		return E2BIG;
   3192  1.26     enami 	}
   3193  1.24       jmc 
   3194  1.51       jmc 	if (ab->ab_data && ab->ab_uio)
   3195  1.51       jmc 		panic("Can't call with uio and data set\n");
   3196  1.51       jmc 	if ((ab->ab_data == NULL) && (ab->ab_uio == NULL))
   3197  1.51       jmc 		panic("One of either ab_data or ab_uio must be set\n");
   3198  1.51       jmc 
   3199  1.26     enami 	memset(&pkt, 0, sizeof(pkt));
   3200  1.26     enami 
   3201  1.26     enami 	pkt.fp_tcode = ab->ab_tcode;
   3202  1.51       jmc 	if (ab->ab_data) {
   3203  1.51       jmc 		pkt.fp_uio.uio_iov = pkt.fp_iov;
   3204  1.51       jmc 		pkt.fp_uio.uio_segflg = UIO_SYSSPACE;
   3205  1.51       jmc 		pkt.fp_uio.uio_rw = UIO_WRITE;
   3206  1.51       jmc 	} else
   3207  1.51       jmc 		memcpy(&pkt.fp_uio, ab->ab_uio, sizeof(struct uio));
   3208  1.51       jmc 
   3209  1.31       jmc 	pkt.fp_statusarg = ab;
   3210  1.31       jmc 	pkt.fp_statuscb = fwohci_write_ack;
   3211  1.31       jmc 
   3212  1.24       jmc 	switch (ab->ab_tcode) {
   3213  1.26     enami 	case IEEE1394_TCODE_WRITE_RESP:
   3214  1.26     enami 		pkt.fp_hlen = 12;
   3215  1.26     enami 	case IEEE1394_TCODE_READ_RESP_QUAD:
   3216  1.26     enami 	case IEEE1394_TCODE_READ_RESP_BLOCK:
   3217  1.26     enami 		if (!pkt.fp_hlen)
   3218  1.26     enami 			pkt.fp_hlen = 16;
   3219  1.26     enami 		high = ab->ab_retlen;
   3220  1.26     enami 		ab->ab_retlen = 0;
   3221  1.26     enami 		lo = 0;
   3222  1.26     enami 		pkt.fp_hdr[0] = 0x00000100 | (sc->sc1394_link_speed << 16) |
   3223  1.26     enami 		    (ab->ab_tlabel << 10) | (pkt.fp_tcode << 4);
   3224  1.26     enami 		break;
   3225  1.26     enami 	default:
   3226  1.26     enami 		pkt.fp_hlen = 16;
   3227  1.51       jmc 		high = ((ab->ab_addr & 0x0000ffff00000000) >> 32);
   3228  1.51       jmc 		lo = (ab->ab_addr & 0x00000000ffffffff);
   3229  1.26     enami 		pkt.fp_hdr[0] = 0x00000100 | (sc->sc1394_link_speed << 16) |
   3230  1.26     enami 		    (psc->sc_tlabel << 10) | (pkt.fp_tcode << 4);
   3231  1.26     enami 		break;
   3232  1.26     enami 	}
   3233  1.26     enami 
   3234  1.29       jmc 	pkt.fp_hdr[1] = ((0xffc0 | ab->ab_req->sc1394_node_id) << 16) | high;
   3235  1.26     enami 	pkt.fp_hdr[2] = lo;
   3236  1.26     enami 	if (pkt.fp_hlen == 16) {
   3237  1.26     enami 		if (ab->ab_length == 4) {
   3238  1.26     enami 			pkt.fp_hdr[3] = ab->ab_data[0];
   3239  1.26     enami 			pkt.fp_dlen = 0;
   3240  1.26     enami 		}  else {
   3241  1.26     enami 			pkt.fp_hdr[3] = (ab->ab_length << 16);
   3242  1.26     enami 			pkt.fp_dlen = ab->ab_length;
   3243  1.51       jmc 			if (ab->ab_data) {
   3244  1.51       jmc 				pkt.fp_uio.uio_iovcnt = 1;
   3245  1.51       jmc 				pkt.fp_uio.uio_resid = ab->ab_length;
   3246  1.51       jmc 				pkt.fp_iov[0].iov_base = ab->ab_data;
   3247  1.51       jmc 				pkt.fp_iov[0].iov_len = ab->ab_length;
   3248  1.51       jmc 			}
   3249  1.26     enami 		}
   3250  1.26     enami 	}
   3251  1.26     enami 	switch (ab->ab_tcode) {
   3252  1.26     enami 	case IEEE1394_TCODE_WRITE_RESP:
   3253  1.26     enami 	case IEEE1394_TCODE_READ_RESP_QUAD:
   3254  1.26     enami 	case IEEE1394_TCODE_READ_RESP_BLOCK:
   3255  1.26     enami 		rv = fwohci_at_output(psc, psc->sc_ctx_atrs, &pkt);
   3256  1.26     enami 		break;
   3257  1.26     enami 	default:
   3258  1.26     enami 		rv = fwohci_at_output(psc, psc->sc_ctx_atrq, &pkt);
   3259  1.26     enami 		break;
   3260  1.26     enami 	}
   3261  1.26     enami 	return rv;
   3262  1.24       jmc }
   3263  1.24       jmc 
   3264  1.24       jmc static int
   3265  1.31       jmc fwohci_read_resp(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *pkt)
   3266  1.24       jmc {
   3267  1.31       jmc 	struct fwohci_cb *fcb = arg;
   3268  1.31       jmc 	struct ieee1394_abuf *ab = fcb->ab;
   3269  1.26     enami 	struct fwohci_pkt newpkt;
   3270  1.26     enami 	u_int32_t *cur, high, lo;
   3271  1.31       jmc 	int i, tcode, rcode, status, rv;
   3272  1.29       jmc 
   3273  1.26     enami 	/*
   3274  1.31       jmc 	 * Both the ACK handling and normal response callbacks are handled here.
   3275  1.31       jmc 	 * The main reason for this is the various error conditions that can
   3276  1.31       jmc 	 * occur trying to block read some areas and the ways that gets reported
   3277  1.31       jmc 	 * back to calling station. This is a variety of ACK codes, responses,
   3278  1.31       jmc 	 * etc which makes it much more difficult to process if both aren't
   3279  1.31       jmc 	 * handled here.
   3280  1.26     enami 	 */
   3281  1.31       jmc 
   3282  1.29       jmc 	/* Check for status packet. */
   3283  1.29       jmc 
   3284  1.29       jmc 	if (pkt->fp_tcode == -1) {
   3285  1.29       jmc 		status = pkt->fp_status & OHCI_DESC_STATUS_ACK_MASK;
   3286  1.31       jmc 		rcode = -1;
   3287  1.31       jmc 		tcode = (pkt->fp_hdr[0] >> 4) & 0xf;
   3288  1.31       jmc 		if ((status != OHCI_CTXCTL_EVENT_ACK_COMPLETE) &&
   3289  1.31       jmc 		    (status != OHCI_CTXCTL_EVENT_ACK_PENDING))
   3290  1.31       jmc 			DPRINTF(("Got status packet: 0x%02x\n",
   3291  1.31       jmc 			    (unsigned int)status));
   3292  1.31       jmc 		fcb->count--;
   3293  1.29       jmc 
   3294  1.31       jmc 		/*
   3295  1.31       jmc 		 * Got all the ack's back and the buffer is invalid (i.e. the
   3296  1.31       jmc 		 * callback has been called. Clean up.
   3297  1.31       jmc 		 */
   3298  1.31       jmc 
   3299  1.31       jmc 		if (fcb->abuf_valid == 0) {
   3300  1.31       jmc 			if (fcb->count == 0)
   3301  1.31       jmc 				free(fcb, M_DEVBUF);
   3302  1.29       jmc 			return IEEE1394_RCODE_COMPLETE;
   3303  1.29       jmc 		}
   3304  1.31       jmc 	} else {
   3305  1.31       jmc 		status = -1;
   3306  1.31       jmc 		tcode = pkt->fp_tcode;
   3307  1.29       jmc 		rcode = (pkt->fp_hdr[1] & 0x0000f000) >> 12;
   3308  1.31       jmc 	}
   3309  1.26     enami 
   3310  1.29       jmc 	/*
   3311  1.29       jmc 	 * Some area's (like the config rom want to be read as quadlets only.
   3312  1.29       jmc 	 *
   3313  1.29       jmc 	 * The current ideas to try are:
   3314  1.29       jmc 	 *
   3315  1.31       jmc 	 * Got an ACK_TYPE_ERROR on a block read.
   3316  1.29       jmc 	 *
   3317  1.31       jmc 	 * Got either RCODE_TYPE or RCODE_ADDRESS errors in a block read
   3318  1.31       jmc 	 * response.
   3319  1.29       jmc 	 *
   3320  1.31       jmc 	 * In all cases construct a new packet for a quadlet read and let
   3321  1.29       jmc 	 * mutli_resp handle the iteration over the space.
   3322  1.29       jmc 	 */
   3323  1.29       jmc 
   3324  1.29       jmc 	if (((status == OHCI_CTXCTL_EVENT_ACK_TYPE_ERROR) &&
   3325  1.31       jmc 	     (tcode == IEEE1394_TCODE_READ_REQ_BLOCK)) ||
   3326  1.29       jmc 	    (((rcode == IEEE1394_RCODE_TYPE_ERROR) ||
   3327  1.31       jmc 	     (rcode == IEEE1394_RCODE_ADDRESS_ERROR)) &&
   3328  1.31       jmc 	      (tcode == IEEE1394_TCODE_READ_RESP_BLOCK))) {
   3329  1.26     enami 
   3330  1.26     enami 		/* Read the area in quadlet chunks (internally track this). */
   3331  1.26     enami 
   3332  1.26     enami 		memset(&newpkt, 0, sizeof(newpkt));
   3333  1.26     enami 
   3334  1.51       jmc 		high = ((ab->ab_addr & 0x0000ffff00000000) >> 32);
   3335  1.51       jmc 		lo = (ab->ab_addr & 0x00000000ffffffff);
   3336  1.26     enami 
   3337  1.26     enami 		newpkt.fp_tcode = IEEE1394_TCODE_READ_REQ_QUAD;
   3338  1.26     enami 		newpkt.fp_hlen = 12;
   3339  1.26     enami 		newpkt.fp_dlen = 0;
   3340  1.26     enami 		newpkt.fp_hdr[1] =
   3341  1.29       jmc 		    ((0xffc0 | ab->ab_req->sc1394_node_id) << 16) | high;
   3342  1.26     enami 		newpkt.fp_hdr[2] = lo;
   3343  1.26     enami 		newpkt.fp_hdr[0] = 0x00000100 | (sc->sc_tlabel << 10) |
   3344  1.26     enami 		    (newpkt.fp_tcode << 4);
   3345  1.26     enami 
   3346  1.26     enami 		rv = fwohci_handler_set(sc, IEEE1394_TCODE_READ_RESP_QUAD,
   3347  1.29       jmc 		    ab->ab_req->sc1394_node_id, sc->sc_tlabel,
   3348  1.31       jmc 		    fwohci_read_multi_resp, fcb);
   3349  1.31       jmc 		if (rv) {
   3350  1.31       jmc 			(*ab->ab_cb)(ab, -1);
   3351  1.31       jmc 			goto cleanup;
   3352  1.31       jmc 		}
   3353  1.31       jmc 		newpkt.fp_statusarg = fcb;
   3354  1.31       jmc 		newpkt.fp_statuscb = fwohci_read_resp;
   3355  1.31       jmc 		rv = fwohci_at_output(sc, sc->sc_ctx_atrq, &newpkt);
   3356  1.31       jmc 		if (rv) {
   3357  1.31       jmc 			fwohci_handler_set(sc, IEEE1394_TCODE_READ_RESP_QUAD,
   3358  1.31       jmc 			    ab->ab_req->sc1394_node_id, sc->sc_tlabel, NULL,
   3359  1.31       jmc 			    NULL);
   3360  1.31       jmc 			(*ab->ab_cb)(ab, -1);
   3361  1.31       jmc 			goto cleanup;
   3362  1.31       jmc 		}
   3363  1.31       jmc 		fcb->count++;
   3364  1.26     enami 		sc->sc_tlabel = (sc->sc_tlabel + 1) & 0x3f;
   3365  1.31       jmc 		return IEEE1394_RCODE_COMPLETE;
   3366  1.31       jmc 	} else if ((rcode != -1) || ((status != -1) &&
   3367  1.31       jmc 	    (status != OHCI_CTXCTL_EVENT_ACK_COMPLETE) &&
   3368  1.31       jmc 	    (status != OHCI_CTXCTL_EVENT_ACK_PENDING))) {
   3369  1.26     enami 
   3370  1.26     enami 		/*
   3371  1.26     enami 		 * Recombine all the iov data into 1 chunk for higher
   3372  1.26     enami 		 * level code.
   3373  1.26     enami 		 */
   3374  1.26     enami 
   3375  1.31       jmc 		if (rcode != -1) {
   3376  1.31       jmc 			cur = ab->ab_data;
   3377  1.31       jmc 			for (i = 0; i < pkt->fp_uio.uio_iovcnt; i++) {
   3378  1.31       jmc 				/*
   3379  1.31       jmc 				 * Make sure and don't exceed the buffer
   3380  1.31       jmc 				 * allocated for return.
   3381  1.31       jmc 				 */
   3382  1.31       jmc 				if ((ab->ab_retlen + pkt->fp_iov[i].iov_len) >
   3383  1.31       jmc 				    ab->ab_length) {
   3384  1.31       jmc 					memcpy(cur, pkt->fp_iov[i].iov_base,
   3385  1.31       jmc 					    (ab->ab_length - ab->ab_retlen));
   3386  1.31       jmc 					ab->ab_retlen = ab->ab_length;
   3387  1.31       jmc 					break;
   3388  1.31       jmc 				}
   3389  1.26     enami 				memcpy(cur, pkt->fp_iov[i].iov_base,
   3390  1.31       jmc 				    pkt->fp_iov[i].iov_len);
   3391  1.31       jmc 				cur += pkt->fp_iov[i].iov_len;
   3392  1.31       jmc 				ab->ab_retlen += pkt->fp_iov[i].iov_len;
   3393  1.26     enami 			}
   3394  1.26     enami 		}
   3395  1.31       jmc 		if (status != -1)
   3396  1.31       jmc 			/* XXX: Need a complete tlabel interface. */
   3397  1.31       jmc 			for (i = 0; i < 64; i++)
   3398  1.31       jmc 				fwohci_handler_set(sc,
   3399  1.31       jmc 				    IEEE1394_TCODE_READ_RESP_QUAD,
   3400  1.31       jmc 				    ab->ab_req->sc1394_node_id, i, NULL, NULL);
   3401  1.26     enami 		(*ab->ab_cb)(ab, rcode);
   3402  1.31       jmc 		goto cleanup;
   3403  1.31       jmc 	} else
   3404  1.31       jmc 		/* Good ack packet. */
   3405  1.31       jmc 		return IEEE1394_RCODE_COMPLETE;
   3406  1.31       jmc 
   3407  1.31       jmc 	/* Can't get here unless ab->ab_cb has been called. */
   3408  1.31       jmc 
   3409  1.31       jmc  cleanup:
   3410  1.31       jmc 	fcb->abuf_valid = 0;
   3411  1.31       jmc 	if (fcb->count == 0)
   3412  1.31       jmc 		free(fcb, M_DEVBUF);
   3413  1.24       jmc 	return IEEE1394_RCODE_COMPLETE;
   3414  1.24       jmc }
   3415  1.24       jmc 
   3416  1.24       jmc static int
   3417  1.31       jmc fwohci_read_multi_resp(struct fwohci_softc *sc, void *arg,
   3418  1.31       jmc     struct fwohci_pkt *pkt)
   3419  1.24       jmc {
   3420  1.31       jmc 	struct fwohci_cb *fcb = arg;
   3421  1.31       jmc 	struct ieee1394_abuf *ab = fcb->ab;
   3422  1.26     enami 	struct fwohci_pkt newpkt;
   3423  1.26     enami 	u_int32_t high, lo;
   3424  1.26     enami 	int rcode, rv;
   3425  1.26     enami 
   3426  1.26     enami 	/*
   3427  1.26     enami 	 * Bad return codes from the wire, just return what's already in the
   3428  1.26     enami 	 * buf.
   3429  1.26     enami 	 */
   3430  1.26     enami 
   3431  1.31       jmc 	/* Make sure a response packet didn't arrive after a bad ACK. */
   3432  1.31       jmc 	if (fcb->abuf_valid == 0)
   3433  1.31       jmc 		return IEEE1394_RCODE_COMPLETE;
   3434  1.31       jmc 
   3435  1.26     enami 	rcode = (pkt->fp_hdr[1] & 0x0000f000) >> 12;
   3436  1.26     enami 
   3437  1.26     enami 	if (rcode) {
   3438  1.26     enami 		(*ab->ab_cb)(ab, rcode);
   3439  1.31       jmc 		goto cleanup;
   3440  1.26     enami 	}
   3441  1.26     enami 
   3442  1.26     enami 	if ((ab->ab_retlen + pkt->fp_iov[0].iov_len) > ab->ab_length) {
   3443  1.26     enami 		memcpy(((char *)ab->ab_data + ab->ab_retlen),
   3444  1.26     enami 		    pkt->fp_iov[0].iov_base, (ab->ab_length - ab->ab_retlen));
   3445  1.26     enami 		ab->ab_retlen = ab->ab_length;
   3446  1.26     enami 	} else {
   3447  1.26     enami 		memcpy(((char *)ab->ab_data + ab->ab_retlen),
   3448  1.26     enami 		    pkt->fp_iov[0].iov_base, 4);
   3449  1.26     enami 		ab->ab_retlen += 4;
   3450  1.26     enami 	}
   3451  1.26     enami 	/* Still more, loop and read 4 more bytes. */
   3452  1.26     enami 	if (ab->ab_retlen < ab->ab_length) {
   3453  1.26     enami 		memset(&newpkt, 0, sizeof(newpkt));
   3454  1.26     enami 
   3455  1.51       jmc 		high = ((ab->ab_addr & 0x0000ffff00000000) >> 32);
   3456  1.51       jmc 		lo = (ab->ab_addr & 0x00000000ffffffff) + ab->ab_retlen;
   3457  1.26     enami 
   3458  1.26     enami 		newpkt.fp_tcode = IEEE1394_TCODE_READ_REQ_QUAD;
   3459  1.26     enami 		newpkt.fp_hlen = 12;
   3460  1.26     enami 		newpkt.fp_dlen = 0;
   3461  1.26     enami 		newpkt.fp_hdr[1] =
   3462  1.29       jmc 		    ((0xffc0 | ab->ab_req->sc1394_node_id) << 16) | high;
   3463  1.26     enami 		newpkt.fp_hdr[2] = lo;
   3464  1.26     enami 		newpkt.fp_hdr[0] = 0x00000100 | (sc->sc_tlabel << 10) |
   3465  1.26     enami 		    (newpkt.fp_tcode << 4);
   3466  1.26     enami 
   3467  1.31       jmc 		newpkt.fp_statusarg = fcb;
   3468  1.31       jmc 		newpkt.fp_statuscb = fwohci_read_resp;
   3469  1.31       jmc 
   3470  1.26     enami 		/*
   3471  1.26     enami 		 * Bad return code.  Just give up and return what's
   3472  1.26     enami 		 * come in now.
   3473  1.26     enami 		 */
   3474  1.26     enami 		rv = fwohci_handler_set(sc, IEEE1394_TCODE_READ_RESP_QUAD,
   3475  1.29       jmc 		    ab->ab_req->sc1394_node_id, sc->sc_tlabel,
   3476  1.31       jmc 		    fwohci_read_multi_resp, fcb);
   3477  1.31       jmc 		if (rv)
   3478  1.31       jmc 			(*ab->ab_cb)(ab, -1);
   3479  1.31       jmc 		else {
   3480  1.31       jmc 			rv = fwohci_at_output(sc, sc->sc_ctx_atrq, &newpkt);
   3481  1.31       jmc 			if (rv) {
   3482  1.31       jmc 				fwohci_handler_set(sc,
   3483  1.31       jmc 				    IEEE1394_TCODE_READ_RESP_QUAD,
   3484  1.31       jmc 				    ab->ab_req->sc1394_node_id, sc->sc_tlabel,
   3485  1.31       jmc 				    NULL, NULL);
   3486  1.31       jmc 				(*ab->ab_cb)(ab, -1);
   3487  1.31       jmc 			} else {
   3488  1.31       jmc 				sc->sc_tlabel = (sc->sc_tlabel + 1) & 0x3f;
   3489  1.31       jmc 				fcb->count++;
   3490  1.31       jmc 				return IEEE1394_RCODE_COMPLETE;
   3491  1.31       jmc 			}
   3492  1.26     enami 		}
   3493  1.31       jmc 	} else
   3494  1.31       jmc 		(*ab->ab_cb)(ab, IEEE1394_RCODE_COMPLETE);
   3495  1.31       jmc 
   3496  1.31       jmc  cleanup:
   3497  1.31       jmc 	/* Can't get here unless ab_cb has been called. */
   3498  1.31       jmc 	fcb->abuf_valid = 0;
   3499  1.31       jmc 	if (fcb->count == 0)
   3500  1.31       jmc 		free(fcb, M_DEVBUF);
   3501  1.31       jmc 	return IEEE1394_RCODE_COMPLETE;
   3502  1.31       jmc }
   3503  1.31       jmc 
   3504  1.31       jmc static int
   3505  1.31       jmc fwohci_write_ack(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *pkt)
   3506  1.31       jmc {
   3507  1.31       jmc 	struct ieee1394_abuf *ab = arg;
   3508  1.31       jmc 	u_int16_t status;
   3509  1.31       jmc 
   3510  1.31       jmc 
   3511  1.31       jmc 	status = pkt->fp_status & OHCI_DESC_STATUS_ACK_MASK;
   3512  1.31       jmc 	if ((status != OHCI_CTXCTL_EVENT_ACK_COMPLETE) &&
   3513  1.31       jmc 	    (status != OHCI_CTXCTL_EVENT_ACK_PENDING))
   3514  1.31       jmc 		DPRINTF(("Got status packet: 0x%02x\n",
   3515  1.31       jmc 		    (unsigned int)status));
   3516  1.31       jmc 
   3517  1.31       jmc 	/* No callback means this level should free the buffers. */
   3518  1.31       jmc 	if (ab->ab_cb)
   3519  1.31       jmc 		(*ab->ab_cb)(ab, status);
   3520  1.31       jmc 	else {
   3521  1.31       jmc 		if (ab->ab_data)
   3522  1.31       jmc 			free(ab->ab_data, M_1394DATA);
   3523  1.31       jmc 		free(ab, M_1394DATA);
   3524  1.31       jmc 	}
   3525  1.26     enami 	return IEEE1394_RCODE_COMPLETE;
   3526  1.24       jmc }
   3527  1.24       jmc 
   3528  1.24       jmc static int
   3529  1.24       jmc fwohci_inreg(struct ieee1394_abuf *ab, int allow)
   3530  1.24       jmc {
   3531  1.29       jmc 	struct ieee1394_softc *sc = ab->ab_req;
   3532  1.26     enami 	struct fwohci_softc *psc =
   3533  1.26     enami 	    (struct fwohci_softc *)sc->sc1394_dev.dv_parent;
   3534  1.26     enami 	u_int32_t high, lo;
   3535  1.31       jmc 	int i, j, rv;
   3536  1.26     enami 
   3537  1.51       jmc 	high = ((ab->ab_addr & 0x0000ffff00000000) >> 32);
   3538  1.51       jmc 	lo = (ab->ab_addr & 0x00000000ffffffff);
   3539  1.26     enami 
   3540  1.31       jmc 	rv = 0;
   3541  1.26     enami 	switch (ab->ab_tcode) {
   3542  1.26     enami 	case IEEE1394_TCODE_READ_REQ_QUAD:
   3543  1.26     enami 	case IEEE1394_TCODE_WRITE_REQ_QUAD:
   3544  1.31       jmc 		if (ab->ab_cb)
   3545  1.31       jmc 			rv = fwohci_handler_set(psc, ab->ab_tcode, high, lo,
   3546  1.31       jmc 			    fwohci_parse_input, ab);
   3547  1.31       jmc 		else
   3548  1.31       jmc 			fwohci_handler_set(psc, ab->ab_tcode, high, lo, NULL,
   3549  1.31       jmc 			    NULL);
   3550  1.26     enami 		break;
   3551  1.26     enami 	case IEEE1394_TCODE_READ_REQ_BLOCK:
   3552  1.26     enami 	case IEEE1394_TCODE_WRITE_REQ_BLOCK:
   3553  1.26     enami 		if (allow) {
   3554  1.26     enami 			for (i = 0; i < (ab->ab_length / 4); i++) {
   3555  1.31       jmc 				if (ab->ab_cb) {
   3556  1.31       jmc 					rv = fwohci_handler_set(psc,
   3557  1.31       jmc 					    ab->ab_tcode, high, lo + (i * 4),
   3558  1.31       jmc 					    fwohci_parse_input, ab);
   3559  1.31       jmc 					if (rv)
   3560  1.31       jmc 						break;
   3561  1.31       jmc 				} else
   3562  1.31       jmc 					fwohci_handler_set(psc, ab->ab_tcode,
   3563  1.31       jmc 					    high, lo + (i * 4), NULL, NULL);
   3564  1.26     enami 			}
   3565  1.31       jmc 			if (i != (ab->ab_length / 4)) {
   3566  1.31       jmc 				j = i + 1;
   3567  1.31       jmc 				for (i = 0; i < j; i++)
   3568  1.31       jmc 					fwohci_handler_set(psc, ab->ab_tcode,
   3569  1.31       jmc 					    high, lo + (i * 4), NULL, NULL);
   3570  1.51       jmc 			}
   3571  1.51       jmc 			/*
   3572  1.51       jmc 			 * XXX: Need something to indicate writing a smaller
   3573  1.51       jmc 			 * amount is ok.
   3574  1.51       jmc 			 */
   3575  1.51       jmc 			if (ab->ab_cb)
   3576  1.51       jmc                                 ab->ab_data = (void *)1;
   3577  1.31       jmc 		} else {
   3578  1.31       jmc 			if (ab->ab_cb)
   3579  1.31       jmc 				rv = fwohci_handler_set(psc, ab->ab_tcode, high,
   3580  1.31       jmc 				    lo, fwohci_parse_input, ab);
   3581  1.31       jmc 			else
   3582  1.31       jmc 				fwohci_handler_set(psc, ab->ab_tcode, high, lo,
   3583  1.31       jmc 				    NULL, NULL);
   3584  1.31       jmc 		}
   3585  1.26     enami 		break;
   3586  1.26     enami 	default:
   3587  1.28       jmc 		DPRINTF(("Invalid registration tcode: %d\n", ab->ab_tcode));
   3588  1.26     enami 		return -1;
   3589  1.26     enami 		break;
   3590  1.26     enami 	}
   3591  1.26     enami 	return rv;
   3592  1.24       jmc }
   3593  1.24       jmc 
   3594  1.24       jmc static int
   3595  1.51       jmc fwohci_unreg(struct ieee1394_abuf *ab, int allow)
   3596  1.51       jmc {
   3597  1.51       jmc 	void *save;
   3598  1.51       jmc 	int rv;
   3599  1.51       jmc 
   3600  1.51       jmc 	save = ab->ab_cb;
   3601  1.51       jmc 	ab->ab_cb = NULL;
   3602  1.51       jmc 	rv = fwohci_inreg(ab, allow);
   3603  1.51       jmc 	ab->ab_cb = save;
   3604  1.51       jmc 	return rv;
   3605  1.51       jmc }
   3606  1.51       jmc 
   3607  1.51       jmc static int
   3608  1.24       jmc fwohci_parse_input(struct fwohci_softc *sc, void *arg, struct fwohci_pkt *pkt)
   3609  1.24       jmc {
   3610  1.26     enami 	struct ieee1394_abuf *ab = (struct ieee1394_abuf *)arg;
   3611  1.51       jmc 	u_int64_t addr;
   3612  1.26     enami 	u_int32_t *cur;
   3613  1.26     enami 	int i, count;
   3614  1.26     enami 
   3615  1.26     enami 	ab->ab_tcode = (pkt->fp_hdr[0] >> 4) & 0xf;
   3616  1.26     enami 	ab->ab_tlabel = (pkt->fp_hdr[0] >> 10) & 0x3f;
   3617  1.51       jmc 	addr = (((u_int64_t)(pkt->fp_hdr[1] & 0xffff) << 32) | pkt->fp_hdr[2]);
   3618  1.26     enami 
   3619  1.26     enami 	switch (ab->ab_tcode) {
   3620  1.26     enami 	case IEEE1394_TCODE_READ_REQ_QUAD:
   3621  1.26     enami 		ab->ab_retlen = 4;
   3622  1.26     enami 		break;
   3623  1.26     enami 	case IEEE1394_TCODE_READ_REQ_BLOCK:
   3624  1.26     enami 		ab->ab_retlen = (pkt->fp_hdr[3] >> 16) & 0xffff;
   3625  1.26     enami 		if (ab->ab_data) {
   3626  1.51       jmc 			if ((addr + ab->ab_retlen) >
   3627  1.51       jmc 			    (ab->ab_addr + ab->ab_length))
   3628  1.26     enami 				return IEEE1394_RCODE_ADDRESS_ERROR;
   3629  1.26     enami 			ab->ab_data = NULL;
   3630  1.26     enami 		} else
   3631  1.26     enami 			if (ab->ab_retlen != ab->ab_length)
   3632  1.26     enami 				return IEEE1394_RCODE_ADDRESS_ERROR;
   3633  1.26     enami 		break;
   3634  1.26     enami 	case IEEE1394_TCODE_WRITE_REQ_QUAD:
   3635  1.26     enami 		ab->ab_retlen = 4;
   3636  1.26     enami 	case IEEE1394_TCODE_WRITE_REQ_BLOCK:
   3637  1.26     enami 		if (!ab->ab_retlen)
   3638  1.26     enami 			ab->ab_retlen = (pkt->fp_hdr[3] >> 16) & 0xffff;
   3639  1.26     enami 		if (ab->ab_data) {
   3640  1.51       jmc 			if ((addr + ab->ab_retlen) >
   3641  1.51       jmc 			    (ab->ab_addr + ab->ab_length))
   3642  1.26     enami 				return IEEE1394_RCODE_ADDRESS_ERROR;
   3643  1.26     enami 			ab->ab_data = NULL;
   3644  1.26     enami 		} else
   3645  1.26     enami 			if (ab->ab_retlen != ab->ab_length)
   3646  1.26     enami 				return IEEE1394_RCODE_ADDRESS_ERROR;
   3647  1.26     enami 
   3648  1.26     enami 		ab->ab_data = malloc(ab->ab_retlen, M_1394DATA, M_WAITOK);
   3649  1.26     enami 		if (ab->ab_tcode == IEEE1394_TCODE_WRITE_REQ_QUAD)
   3650  1.26     enami 			ab->ab_data[0] = pkt->fp_hdr[3];
   3651  1.26     enami 		else {
   3652  1.26     enami 			count = 0;
   3653  1.26     enami 			cur = ab->ab_data;
   3654  1.26     enami 			for (i = 0; i < pkt->fp_uio.uio_iovcnt; i++) {
   3655  1.26     enami 				memcpy(cur, pkt->fp_iov[i].iov_base,
   3656  1.26     enami 				    pkt->fp_iov[i].iov_len);
   3657  1.26     enami 				cur += pkt->fp_iov[i].iov_len;
   3658  1.26     enami 				count += pkt->fp_iov[i].iov_len;
   3659  1.26     enami 			}
   3660  1.26     enami 			if (ab->ab_retlen != count)
   3661  1.26     enami 				panic("Packet claims %d length "
   3662  1.26     enami 				    "but only %d bytes returned\n",
   3663  1.26     enami 				    ab->ab_retlen, count);
   3664  1.26     enami 		}
   3665  1.26     enami 		break;
   3666  1.26     enami 	default:
   3667  1.26     enami 		panic("Got a callback for a tcode that wasn't requested: %d\n",
   3668  1.26     enami 		    ab->ab_tcode);
   3669  1.26     enami 		break;
   3670  1.26     enami 	}
   3671  1.51       jmc 	ab->ab_addr = addr;
   3672  1.26     enami 	ab->ab_cb(ab, IEEE1394_RCODE_COMPLETE);
   3673  1.26     enami 	return -1;
   3674  1.30       jmc }
   3675  1.30       jmc 
   3676  1.30       jmc static int
   3677  1.30       jmc fwohci_submatch(struct device *parent, struct cfdata *cf, void *aux)
   3678  1.30       jmc {
   3679  1.30       jmc 	struct ieee1394_attach_args *fwa = aux;
   3680  1.30       jmc 
   3681  1.30       jmc 	/* Both halves must be filled in for a match. */
   3682  1.30       jmc 	if ((cf->fwbuscf_idhi == FWBUS_UNK_IDHI &&
   3683  1.30       jmc 	    cf->fwbuscf_idlo == FWBUS_UNK_IDLO) ||
   3684  1.30       jmc 	    (cf->fwbuscf_idhi == ntohl(*((u_int32_t *)&fwa->uid[0])) &&
   3685  1.30       jmc 	    cf->fwbuscf_idlo == ntohl(*((u_int32_t *)&fwa->uid[4]))))
   3686  1.30       jmc 		return ((*cf->cf_attach->ca_match)(parent, cf, aux));
   3687  1.30       jmc 	return 0;
   3688  1.47    ichiro }
   3689  1.47    ichiro 
   3690  1.47    ichiro int
   3691  1.47    ichiro fwohci_detach(struct fwohci_softc *sc, int flags)
   3692  1.47    ichiro {
   3693  1.47    ichiro 	int rv = 0;
   3694  1.47    ichiro 
   3695  1.47    ichiro 	if (sc->sc_sc1394.sc1394_if != NULL)
   3696  1.47    ichiro 		rv = config_detach(sc->sc_sc1394.sc1394_if, flags);
   3697  1.47    ichiro 	if (rv != 0)
   3698  1.47    ichiro 		return (rv);
   3699  1.47    ichiro 
   3700  1.47    ichiro 	callout_stop(&sc->sc_selfid_callout);
   3701  1.47    ichiro 
   3702  1.47    ichiro 	if (sc->sc_powerhook != NULL)
   3703  1.47    ichiro 		powerhook_disestablish(sc->sc_powerhook);
   3704  1.47    ichiro 	if (sc->sc_shutdownhook != NULL)
   3705  1.47    ichiro 		shutdownhook_disestablish(sc->sc_shutdownhook);
   3706  1.47    ichiro 
   3707  1.47    ichiro 	return (rv);
   3708  1.47    ichiro }
   3709  1.47    ichiro 
   3710  1.47    ichiro int
   3711  1.47    ichiro fwohci_activate(struct device *self, enum devact act)
   3712  1.47    ichiro {
   3713  1.47    ichiro 	struct fwohci_softc *sc = (struct fwohci_softc *)self;
   3714  1.47    ichiro 	int s, rv = 0;
   3715  1.47    ichiro 
   3716  1.47    ichiro 	s = splhigh();
   3717  1.47    ichiro 	switch (act) {
   3718  1.47    ichiro 	case DVACT_ACTIVATE:
   3719  1.47    ichiro 		rv = EOPNOTSUPP;
   3720  1.47    ichiro 		break;
   3721  1.47    ichiro 
   3722  1.47    ichiro 	case DVACT_DEACTIVATE:
   3723  1.47    ichiro 		if (sc->sc_sc1394.sc1394_if != NULL)
   3724  1.47    ichiro 	                rv = config_deactivate(sc->sc_sc1394.sc1394_if);
   3725  1.47    ichiro 		break;
   3726  1.47    ichiro 	}
   3727  1.47    ichiro 	splx(s);
   3728  1.47    ichiro 
   3729  1.47    ichiro 	return (rv);
   3730   1.1      matt }
   3731  1.33      onoe 
   3732  1.33      onoe #ifdef FW_DEBUG
   3733  1.33      onoe static void
   3734  1.33      onoe fwohci_show_intr(struct fwohci_softc *sc, u_int32_t intmask)
   3735  1.33      onoe {
   3736  1.33      onoe 
   3737  1.33      onoe 	printf("%s: intmask=0x%08x:", sc->sc_sc1394.sc1394_dev.dv_xname,
   3738  1.33      onoe 	    intmask);
   3739  1.33      onoe 	if (intmask & OHCI_Int_CycleTooLong)
   3740  1.33      onoe 		printf(" CycleTooLong");
   3741  1.33      onoe 	if (intmask & OHCI_Int_UnrecoverableError)
   3742  1.33      onoe 		printf(" UnrecoverableError");
   3743  1.33      onoe 	if (intmask & OHCI_Int_CycleInconsistent)
   3744  1.33      onoe 		printf(" CycleInconsistent");
   3745  1.33      onoe 	if (intmask & OHCI_Int_BusReset)
   3746  1.33      onoe 		printf(" BusReset");
   3747  1.33      onoe 	if (intmask & OHCI_Int_SelfIDComplete)
   3748  1.33      onoe 		printf(" SelfIDComplete");
   3749  1.33      onoe 	if (intmask & OHCI_Int_LockRespErr)
   3750  1.33      onoe 		printf(" LockRespErr");
   3751  1.33      onoe 	if (intmask & OHCI_Int_PostedWriteErr)
   3752  1.33      onoe 		printf(" PostedWriteErr");
   3753  1.33      onoe 	if (intmask & OHCI_Int_ReqTxComplete)
   3754  1.33      onoe 		printf(" ReqTxComplete(0x%04x)",
   3755  1.33      onoe 		    OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_TX_REQUEST,
   3756  1.33      onoe 		    OHCI_SUBREG_ContextControlClear));
   3757  1.33      onoe 	if (intmask & OHCI_Int_RespTxComplete)
   3758  1.33      onoe 		printf(" RespTxComplete(0x%04x)",
   3759  1.33      onoe 		    OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_TX_RESPONSE,
   3760  1.33      onoe 		    OHCI_SUBREG_ContextControlClear));
   3761  1.33      onoe 	if (intmask & OHCI_Int_ARRS)
   3762  1.33      onoe 		printf(" ARRS(0x%04x)",
   3763  1.33      onoe 		    OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_RX_RESPONSE,
   3764  1.33      onoe 		    OHCI_SUBREG_ContextControlClear));
   3765  1.33      onoe 	if (intmask & OHCI_Int_ARRQ)
   3766  1.33      onoe 		printf(" ARRQ(0x%04x)",
   3767  1.33      onoe 		    OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_RX_REQUEST,
   3768  1.33      onoe 		    OHCI_SUBREG_ContextControlClear));
   3769  1.33      onoe 	if (intmask & OHCI_Int_IsochRx)
   3770  1.33      onoe 		printf(" IsochRx(0x%08x)",
   3771  1.33      onoe 		    OHCI_CSR_READ(sc, OHCI_REG_IsoRecvIntEventClear));
   3772  1.33      onoe 	if (intmask & OHCI_Int_IsochTx)
   3773  1.33      onoe 		printf(" IsochTx(0x%08x)",
   3774  1.33      onoe 		    OHCI_CSR_READ(sc, OHCI_REG_IsoXmitIntEventClear));
   3775  1.33      onoe 	if (intmask & OHCI_Int_RQPkt)
   3776  1.33      onoe 		printf(" RQPkt(0x%04x)",
   3777  1.33      onoe 		    OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_RX_REQUEST,
   3778  1.33      onoe 		    OHCI_SUBREG_ContextControlClear));
   3779  1.33      onoe 	if (intmask & OHCI_Int_RSPkt)
   3780  1.33      onoe 		printf(" RSPkt(0x%04x)",
   3781  1.33      onoe 		    OHCI_ASYNC_DMA_READ(sc, OHCI_CTX_ASYNC_RX_RESPONSE,
   3782  1.33      onoe 		    OHCI_SUBREG_ContextControlClear));
   3783  1.33      onoe 	printf("\n");
   3784  1.33      onoe }
   3785  1.33      onoe 
   3786  1.33      onoe static void
   3787  1.33      onoe fwohci_show_phypkt(struct fwohci_softc *sc, u_int32_t val)
   3788  1.33      onoe {
   3789  1.33      onoe 	u_int8_t key, phyid;
   3790  1.33      onoe 
   3791  1.33      onoe 	key = (val & 0xc0000000) >> 30;
   3792  1.33      onoe 	phyid = (val & 0x3f000000) >> 24;
   3793  1.33      onoe 	printf("%s: PHY packet from %d: ",
   3794  1.33      onoe 	    sc->sc_sc1394.sc1394_dev.dv_xname, phyid);
   3795  1.33      onoe 	switch (key) {
   3796  1.33      onoe 	case 0:
   3797  1.33      onoe 		printf("PHY Config:");
   3798  1.33      onoe 		if (val & 0x00800000)
   3799  1.33      onoe 			printf(" ForceRoot");
   3800  1.33      onoe 		if (val & 0x00400000)
   3801  1.33      onoe 			printf(" Gap=%x", (val & 0x003f0000) >> 16);
   3802  1.33      onoe 		printf("\n");
   3803  1.33      onoe 		break;
   3804  1.33      onoe 	case 1:
   3805  1.33      onoe 		printf("Link-on\n");
   3806  1.33      onoe 		break;
   3807  1.33      onoe 	case 2:
   3808  1.33      onoe 		printf("SelfID:");
   3809  1.33      onoe 		if (val & 0x00800000) {
   3810  1.33      onoe 			printf(" #%d", (val & 0x00700000) >> 20);
   3811  1.33      onoe 		} else {
   3812  1.33      onoe 			if (val & 0x00400000)
   3813  1.33      onoe 				printf(" LinkActive");
   3814  1.33      onoe 			printf(" Gap=%x", (val & 0x003f0000) >> 16);
   3815  1.33      onoe 			printf(" Spd=S%d", 100 << ((val & 0x0000c000) >> 14));
   3816  1.33      onoe 			if (val & 0x00000800)
   3817  1.33      onoe 				printf(" Cont");
   3818  1.33      onoe 			if (val & 0x00000002)
   3819  1.33      onoe 				printf(" InitiateBusReset");
   3820  1.33      onoe 		}
   3821  1.33      onoe 		if (val & 0x00000001)
   3822  1.33      onoe 			printf(" +");
   3823  1.33      onoe 		printf("\n");
   3824  1.33      onoe 		break;
   3825  1.33      onoe 	default:
   3826  1.33      onoe 		printf("unknown: 0x%08x\n", val);
   3827  1.33      onoe 		break;
   3828  1.33      onoe 	}
   3829  1.33      onoe }
   3830  1.33      onoe #endif /* FW_DEBUG */
   3831